[{"status":"public","type":"journal_article","publication":"European Journal of Mechanics - A/Solids","language":[{"iso":"eng"}],"article_number":"104854","user_id":"85414","department":[{"_id":"952"},{"_id":"321"}],"_id":"62771","citation":{"bibtex":"@article{Schulte_Karca_Ostwald_Menzel_2022, title={Machine learning-assisted parameter identification for constitutive models based on concatenated loading path sequences}, volume={98}, DOI={<a href=\"https://doi.org/10.1016/j.euromechsol.2022.104854\">10.1016/j.euromechsol.2022.104854</a>}, number={104854}, journal={European Journal of Mechanics - A/Solids}, publisher={Elsevier BV}, author={Schulte, Robin and Karca, Cavid and Ostwald, Richard and Menzel, Andreas}, year={2022} }","mla":"Schulte, Robin, et al. “Machine Learning-Assisted Parameter Identification for Constitutive Models Based on Concatenated Loading Path Sequences.” <i>European Journal of Mechanics - A/Solids</i>, vol. 98, 104854, Elsevier BV, 2022, doi:<a href=\"https://doi.org/10.1016/j.euromechsol.2022.104854\">10.1016/j.euromechsol.2022.104854</a>.","short":"R. Schulte, C. Karca, R. Ostwald, A. Menzel, European Journal of Mechanics - A/Solids 98 (2022).","apa":"Schulte, R., Karca, C., Ostwald, R., &#38; Menzel, A. (2022). Machine learning-assisted parameter identification for constitutive models based on concatenated loading path sequences. <i>European Journal of Mechanics - A/Solids</i>, <i>98</i>, Article 104854. <a href=\"https://doi.org/10.1016/j.euromechsol.2022.104854\">https://doi.org/10.1016/j.euromechsol.2022.104854</a>","chicago":"Schulte, Robin, Cavid Karca, Richard Ostwald, and Andreas Menzel. “Machine Learning-Assisted Parameter Identification for Constitutive Models Based on Concatenated Loading Path Sequences.” <i>European Journal of Mechanics - A/Solids</i> 98 (2022). <a href=\"https://doi.org/10.1016/j.euromechsol.2022.104854\">https://doi.org/10.1016/j.euromechsol.2022.104854</a>.","ieee":"R. Schulte, C. Karca, R. Ostwald, and A. Menzel, “Machine learning-assisted parameter identification for constitutive models based on concatenated loading path sequences,” <i>European Journal of Mechanics - A/Solids</i>, vol. 98, Art. no. 104854, 2022, doi: <a href=\"https://doi.org/10.1016/j.euromechsol.2022.104854\">10.1016/j.euromechsol.2022.104854</a>.","ama":"Schulte R, Karca C, Ostwald R, Menzel A. Machine learning-assisted parameter identification for constitutive models based on concatenated loading path sequences. <i>European Journal of Mechanics - A/Solids</i>. 2022;98. doi:<a href=\"https://doi.org/10.1016/j.euromechsol.2022.104854\">10.1016/j.euromechsol.2022.104854</a>"},"intvolume":"        98","year":"2022","publication_status":"published","quality_controlled":"1","publication_identifier":{"issn":["0997-7538"]},"doi":"10.1016/j.euromechsol.2022.104854","title":"Machine learning-assisted parameter identification for constitutive models based on concatenated loading path sequences","date_created":"2025-12-03T12:49:17Z","author":[{"last_name":"Schulte","full_name":"Schulte, Robin","first_name":"Robin"},{"first_name":"Cavid","last_name":"Karca","full_name":"Karca, Cavid"},{"first_name":"Richard","full_name":"Ostwald, Richard","id":"106876","last_name":"Ostwald","orcid":"0000-0003-2147-8444"},{"first_name":"Andreas","last_name":"Menzel","full_name":"Menzel, Andreas"}],"volume":98,"date_updated":"2025-12-03T12:50:06Z","publisher":"Elsevier BV"},{"status":"public","abstract":[{"text":"<jats:p>We report on coherent transmission of beyond 100 GBd signaling based on plasmonic technology. Using dual-drive plasmonic-organic-hybrid I/Q modulator on silicon photonics platform, we demonstrate the successful transmission of 160-GBaud QPSK and 140-GBaud 16QAM modulations.</jats:p>","lang":"eng"}],"publication":"Optical Fiber Communication Conference (OFC) 2022","type":"conference","user_id":"112030","_id":"59502","citation":{"short":"H. Mardoyan, F. Jorge, M. Destraz, B. Duval, B. Bitachon, Y. Horst, K. Benyahya, F. Blache, M. Goix, E. De Leo, P. Habegger, N. Meier, N. Del Medico, V. Tedaldi, C. Funck, N. Güsken, J. Leuthold, J. Renaudier, C. Hoessbacher, W. Heni, B. Baeuerle, in: Optical Fiber Communication Conference (OFC) 2022, Optica Publishing Group, 2022.","mla":"Mardoyan, Haïk, et al. “Generation and Transmission of 160-Gbaud QPSK Coherent Signals Using a Dual-Drive Plasmonic-Organic Hybrid I/Q Modulator on Silicon Photonics.” <i>Optical Fiber Communication Conference (OFC) 2022</i>, Optica Publishing Group, 2022, doi:<a href=\"https://doi.org/10.1364/ofc.2022.th1j.5\">10.1364/ofc.2022.th1j.5</a>.","bibtex":"@inproceedings{Mardoyan_Jorge_Destraz_Duval_Bitachon_Horst_Benyahya_Blache_Goix_De Leo_et al._2022, title={Generation and transmission of 160-Gbaud QPSK Coherent Signals using a Dual-Drive Plasmonic-Organic Hybrid I/Q modulator on Silicon Photonics}, DOI={<a href=\"https://doi.org/10.1364/ofc.2022.th1j.5\">10.1364/ofc.2022.th1j.5</a>}, booktitle={Optical Fiber Communication Conference (OFC) 2022}, publisher={Optica Publishing Group}, author={Mardoyan, Haïk and Jorge, Filipe and Destraz, Marcel and Duval, Bernadette and Bitachon, Bertold and Horst, Yannik and Benyahya, Kaoutar and Blache, Fabrice and Goix, Michel and De Leo, Eva and et al.}, year={2022} }","apa":"Mardoyan, H., Jorge, F., Destraz, M., Duval, B., Bitachon, B., Horst, Y., Benyahya, K., Blache, F., Goix, M., De Leo, E., Habegger, P., Meier, N., Del Medico, N., Tedaldi, V., Funck, C., Güsken, N., Leuthold, J., Renaudier, J., Hoessbacher, C., … Baeuerle, B. (2022). Generation and transmission of 160-Gbaud QPSK Coherent Signals using a Dual-Drive Plasmonic-Organic Hybrid I/Q modulator on Silicon Photonics. <i>Optical Fiber Communication Conference (OFC) 2022</i>. <a href=\"https://doi.org/10.1364/ofc.2022.th1j.5\">https://doi.org/10.1364/ofc.2022.th1j.5</a>","chicago":"Mardoyan, Haïk, Filipe Jorge, Marcel Destraz, Bernadette Duval, Bertold Bitachon, Yannik Horst, Kaoutar Benyahya, et al. “Generation and Transmission of 160-Gbaud QPSK Coherent Signals Using a Dual-Drive Plasmonic-Organic Hybrid I/Q Modulator on Silicon Photonics.” In <i>Optical Fiber Communication Conference (OFC) 2022</i>. Optica Publishing Group, 2022. <a href=\"https://doi.org/10.1364/ofc.2022.th1j.5\">https://doi.org/10.1364/ofc.2022.th1j.5</a>.","ieee":"H. Mardoyan <i>et al.</i>, “Generation and transmission of 160-Gbaud QPSK Coherent Signals using a Dual-Drive Plasmonic-Organic Hybrid I/Q modulator on Silicon Photonics,” 2022, doi: <a href=\"https://doi.org/10.1364/ofc.2022.th1j.5\">10.1364/ofc.2022.th1j.5</a>.","ama":"Mardoyan H, Jorge F, Destraz M, et al. Generation and transmission of 160-Gbaud QPSK Coherent Signals using a Dual-Drive Plasmonic-Organic Hybrid I/Q modulator on Silicon Photonics. In: <i>Optical Fiber Communication Conference (OFC) 2022</i>. Optica Publishing Group; 2022. doi:<a href=\"https://doi.org/10.1364/ofc.2022.th1j.5\">10.1364/ofc.2022.th1j.5</a>"},"year":"2022","publication_status":"published","doi":"10.1364/ofc.2022.th1j.5","title":"Generation and transmission of 160-Gbaud QPSK Coherent Signals using a Dual-Drive Plasmonic-Organic Hybrid I/Q modulator on Silicon Photonics","author":[{"full_name":"Mardoyan, Haïk","last_name":"Mardoyan","first_name":"Haïk"},{"full_name":"Jorge, Filipe","last_name":"Jorge","first_name":"Filipe"},{"full_name":"Destraz, Marcel","last_name":"Destraz","first_name":"Marcel"},{"last_name":"Duval","full_name":"Duval, Bernadette","first_name":"Bernadette"},{"last_name":"Bitachon","full_name":"Bitachon, Bertold","first_name":"Bertold"},{"first_name":"Yannik","last_name":"Horst","full_name":"Horst, Yannik"},{"first_name":"Kaoutar","full_name":"Benyahya, Kaoutar","last_name":"Benyahya"},{"first_name":"Fabrice","full_name":"Blache, Fabrice","last_name":"Blache"},{"first_name":"Michel","last_name":"Goix","full_name":"Goix, Michel"},{"first_name":"Eva","last_name":"De Leo","full_name":"De Leo, Eva"},{"full_name":"Habegger, Patrick","last_name":"Habegger","first_name":"Patrick"},{"last_name":"Meier","full_name":"Meier, Norbert","first_name":"Norbert"},{"first_name":"Nino","last_name":"Del Medico","full_name":"Del Medico, Nino"},{"full_name":"Tedaldi, Valentino","last_name":"Tedaldi","first_name":"Valentino"},{"first_name":"Christian","full_name":"Funck, Christian","last_name":"Funck"},{"first_name":"Nicholas","last_name":"Güsken","full_name":"Güsken, Nicholas"},{"full_name":"Leuthold, Juerg","last_name":"Leuthold","first_name":"Juerg"},{"first_name":"Jéremie","last_name":"Renaudier","full_name":"Renaudier, Jéremie"},{"first_name":"Claudia","last_name":"Hoessbacher","full_name":"Hoessbacher, Claudia"},{"full_name":"Heni, Wolfgang","last_name":"Heni","first_name":"Wolfgang"},{"first_name":"Benedikt","last_name":"Baeuerle","full_name":"Baeuerle, Benedikt"}],"date_created":"2025-04-10T13:27:59Z","publisher":"Optica Publishing Group","date_updated":"2025-12-03T14:48:36Z"},{"language":[{"iso":"eng"}],"keyword":["electrocatalysis","oxygen evolution reaction","cobalt spinel","electrochemical impedance spectroscopy"],"publication":"Nature Communications","abstract":[{"text":"The three-dimensional (3D) distribution of individual atoms on the surface of catalyst nanoparticles plays a vital role in their activity and stability. Optimising the performance of electrocatalysts requires atomic-scale information, but it is difficult to obtain. Here, we use atom probe tomography to elucidate the 3D structure of 10 nm sized Co2FeO4 and CoFe2O4 nanoparticles during oxygen evolution reaction (OER). We reveal nanoscale spinodal decomposition in pristine Co2FeO4. The interfaces of Co-rich and Fe-rich nanodomains of Co2FeO4 become trapping sites for hydroxyl groups, contributing to a higher OER activity compared to that of CoFe2O4. However, the activity of Co2FeO4 drops considerably due to concurrent irreversible transformation towards CoIVO2 and pronounced Fe dissolution. In contrast, there is negligible elemental redistribution for CoFe2O4 after OER, except for surface structural transformation towards (FeIII, CoIII)2O3. Overall, our study provides a unique 3D compositional distribution of mixed Co-Fe spinel oxides, which gives atomic-scale insights into active sites and the deactivation of electrocatalysts during OER.","lang":"eng"}],"date_created":"2025-12-03T15:22:16Z","publisher":"Springer Science and Business Media LLC","title":"3D atomic-scale imaging of mixed Co-Fe spinel oxide nanoparticles during oxygen evolution reaction","issue":"1","quality_controlled":"1","year":"2022","department":[{"_id":"985"}],"user_id":"116779","_id":"62801","extern":"1","article_type":"original","article_number":"179","type":"journal_article","status":"public","volume":13,"author":[{"first_name":"Weikai","full_name":"Xiang, Weikai","last_name":"Xiang"},{"first_name":"Nating","last_name":"Yang","full_name":"Yang, Nating"},{"last_name":"Li","full_name":"Li, Xiaopeng","first_name":"Xiaopeng"},{"full_name":"Linnemann, Julia","id":"116779","orcid":"0000-0001-6883-5424","last_name":"Linnemann","first_name":"Julia"},{"full_name":"Hagemann, Ulrich","last_name":"Hagemann","first_name":"Ulrich"},{"last_name":"Ruediger","full_name":"Ruediger, Olaf","first_name":"Olaf"},{"first_name":"Markus","last_name":"Heidelmann","full_name":"Heidelmann, Markus"},{"first_name":"Tobias","last_name":"Falk","full_name":"Falk, Tobias"},{"last_name":"Aramini","full_name":"Aramini, Matteo","first_name":"Matteo"},{"full_name":"DeBeer, Serena","last_name":"DeBeer","first_name":"Serena"},{"last_name":"Muhler","full_name":"Muhler, Martin","first_name":"Martin"},{"last_name":"Tschulik","full_name":"Tschulik, Kristina","first_name":"Kristina"},{"last_name":"Li","full_name":"Li, Tong","first_name":"Tong"}],"oa":"1","date_updated":"2025-12-03T16:30:12Z","doi":"10.1038/s41467-021-27788-2","main_file_link":[{"open_access":"1","url":"https://www.nature.com/articles/s41467-021-27788-2"}],"publication_identifier":{"issn":["2041-1723"]},"publication_status":"published","intvolume":"        13","citation":{"apa":"Xiang, W., Yang, N., Li, X., Linnemann, J., Hagemann, U., Ruediger, O., Heidelmann, M., Falk, T., Aramini, M., DeBeer, S., Muhler, M., Tschulik, K., &#38; Li, T. (2022). 3D atomic-scale imaging of mixed Co-Fe spinel oxide nanoparticles during oxygen evolution reaction. <i>Nature Communications</i>, <i>13</i>(1), Article 179. <a href=\"https://doi.org/10.1038/s41467-021-27788-2\">https://doi.org/10.1038/s41467-021-27788-2</a>","short":"W. Xiang, N. Yang, X. Li, J. Linnemann, U. Hagemann, O. Ruediger, M. Heidelmann, T. Falk, M. Aramini, S. DeBeer, M. Muhler, K. Tschulik, T. Li, Nature Communications 13 (2022).","bibtex":"@article{Xiang_Yang_Li_Linnemann_Hagemann_Ruediger_Heidelmann_Falk_Aramini_DeBeer_et al._2022, title={3D atomic-scale imaging of mixed Co-Fe spinel oxide nanoparticles during oxygen evolution reaction}, volume={13}, DOI={<a href=\"https://doi.org/10.1038/s41467-021-27788-2\">10.1038/s41467-021-27788-2</a>}, number={1179}, journal={Nature Communications}, publisher={Springer Science and Business Media LLC}, author={Xiang, Weikai and Yang, Nating and Li, Xiaopeng and Linnemann, Julia and Hagemann, Ulrich and Ruediger, Olaf and Heidelmann, Markus and Falk, Tobias and Aramini, Matteo and DeBeer, Serena and et al.}, year={2022} }","mla":"Xiang, Weikai, et al. “3D Atomic-Scale Imaging of Mixed Co-Fe Spinel Oxide Nanoparticles during Oxygen Evolution Reaction.” <i>Nature Communications</i>, vol. 13, no. 1, 179, Springer Science and Business Media LLC, 2022, doi:<a href=\"https://doi.org/10.1038/s41467-021-27788-2\">10.1038/s41467-021-27788-2</a>.","ieee":"W. Xiang <i>et al.</i>, “3D atomic-scale imaging of mixed Co-Fe spinel oxide nanoparticles during oxygen evolution reaction,” <i>Nature Communications</i>, vol. 13, no. 1, Art. no. 179, 2022, doi: <a href=\"https://doi.org/10.1038/s41467-021-27788-2\">10.1038/s41467-021-27788-2</a>.","chicago":"Xiang, Weikai, Nating Yang, Xiaopeng Li, Julia Linnemann, Ulrich Hagemann, Olaf Ruediger, Markus Heidelmann, et al. “3D Atomic-Scale Imaging of Mixed Co-Fe Spinel Oxide Nanoparticles during Oxygen Evolution Reaction.” <i>Nature Communications</i> 13, no. 1 (2022). <a href=\"https://doi.org/10.1038/s41467-021-27788-2\">https://doi.org/10.1038/s41467-021-27788-2</a>.","ama":"Xiang W, Yang N, Li X, et al. 3D atomic-scale imaging of mixed Co-Fe spinel oxide nanoparticles during oxygen evolution reaction. <i>Nature Communications</i>. 2022;13(1). doi:<a href=\"https://doi.org/10.1038/s41467-021-27788-2\">10.1038/s41467-021-27788-2</a>"}},{"main_file_link":[{"open_access":"1"}],"doi":"10.1039/d2ta06552e","author":[{"last_name":"Aymerich-Armengol","full_name":"Aymerich-Armengol, Raquel","first_name":"Raquel"},{"first_name":"Paolo","full_name":"Cignoni, Paolo","last_name":"Cignoni"},{"first_name":"Petra","last_name":"Ebbinghaus","full_name":"Ebbinghaus, Petra"},{"first_name":"Julia","id":"116779","full_name":"Linnemann, Julia","last_name":"Linnemann","orcid":"0000-0001-6883-5424"},{"full_name":"Rabe, Martin","last_name":"Rabe","first_name":"Martin"},{"full_name":"Tschulik, Kristina","last_name":"Tschulik","first_name":"Kristina"},{"last_name":"Scheu","full_name":"Scheu, Christina","first_name":"Christina"},{"last_name":"Lim","full_name":"Lim, Joohyun","first_name":"Joohyun"}],"volume":10,"date_updated":"2025-12-03T16:30:43Z","oa":"1","citation":{"ama":"Aymerich-Armengol R, Cignoni P, Ebbinghaus P, et al. Mechanism of coupled phase/morphology transformation of 2D manganese oxides through Fe galvanic exchange reaction. <i>Journal of Materials Chemistry A</i>. 2022;10(45):24190-24198. doi:<a href=\"https://doi.org/10.1039/d2ta06552e\">10.1039/d2ta06552e</a>","ieee":"R. Aymerich-Armengol <i>et al.</i>, “Mechanism of coupled phase/morphology transformation of 2D manganese oxides through Fe galvanic exchange reaction,” <i>Journal of Materials Chemistry A</i>, vol. 10, no. 45, pp. 24190–24198, 2022, doi: <a href=\"https://doi.org/10.1039/d2ta06552e\">10.1039/d2ta06552e</a>.","chicago":"Aymerich-Armengol, Raquel, Paolo Cignoni, Petra Ebbinghaus, Julia Linnemann, Martin Rabe, Kristina Tschulik, Christina Scheu, and Joohyun Lim. “Mechanism of Coupled Phase/Morphology Transformation of 2D Manganese Oxides through Fe Galvanic Exchange Reaction.” <i>Journal of Materials Chemistry A</i> 10, no. 45 (2022): 24190–98. <a href=\"https://doi.org/10.1039/d2ta06552e\">https://doi.org/10.1039/d2ta06552e</a>.","apa":"Aymerich-Armengol, R., Cignoni, P., Ebbinghaus, P., Linnemann, J., Rabe, M., Tschulik, K., Scheu, C., &#38; Lim, J. (2022). Mechanism of coupled phase/morphology transformation of 2D manganese oxides through Fe galvanic exchange reaction. <i>Journal of Materials Chemistry A</i>, <i>10</i>(45), 24190–24198. <a href=\"https://doi.org/10.1039/d2ta06552e\">https://doi.org/10.1039/d2ta06552e</a>","mla":"Aymerich-Armengol, Raquel, et al. “Mechanism of Coupled Phase/Morphology Transformation of 2D Manganese Oxides through Fe Galvanic Exchange Reaction.” <i>Journal of Materials Chemistry A</i>, vol. 10, no. 45, Royal Society of Chemistry (RSC), 2022, pp. 24190–98, doi:<a href=\"https://doi.org/10.1039/d2ta06552e\">10.1039/d2ta06552e</a>.","bibtex":"@article{Aymerich-Armengol_Cignoni_Ebbinghaus_Linnemann_Rabe_Tschulik_Scheu_Lim_2022, title={Mechanism of coupled phase/morphology transformation of 2D manganese oxides through Fe galvanic exchange reaction}, volume={10}, DOI={<a href=\"https://doi.org/10.1039/d2ta06552e\">10.1039/d2ta06552e</a>}, number={45}, journal={Journal of Materials Chemistry A}, publisher={Royal Society of Chemistry (RSC)}, author={Aymerich-Armengol, Raquel and Cignoni, Paolo and Ebbinghaus, Petra and Linnemann, Julia and Rabe, Martin and Tschulik, Kristina and Scheu, Christina and Lim, Joohyun}, year={2022}, pages={24190–24198} }","short":"R. Aymerich-Armengol, P. Cignoni, P. Ebbinghaus, J. Linnemann, M. Rabe, K. Tschulik, C. Scheu, J. Lim, Journal of Materials Chemistry A 10 (2022) 24190–24198."},"page":"24190-24198","intvolume":"        10","publication_status":"published","publication_identifier":{"issn":["2050-7488","2050-7496"]},"extern":"1","article_type":"original","user_id":"116779","department":[{"_id":"985"}],"_id":"62813","status":"public","type":"journal_article","title":"Mechanism of coupled phase/morphology transformation of 2D manganese oxides through Fe galvanic exchange reaction","date_created":"2025-12-03T16:02:15Z","publisher":"Royal Society of Chemistry (RSC)","year":"2022","issue":"45","quality_controlled":"1","language":[{"iso":"eng"}],"keyword":["manganese oxide","nanomaterials","TEM","supercapacitors"],"abstract":[{"text":"Nanostructured manganese oxides have a rich variety of morphologies and crystal phases which can undergo transformations during synthesis and application. Although these structural features are crucial for their performance, the mechanisms behind such transitions are not well understood. Herein, we describe the mechanism of transformation from layered 2D δ-MnO2 nanosheets to the scarcely reported γ-MnO2 nanocone morphology. Despite the common purpose of introducing Fe dopants to enhance the conductivity of layered manganese oxides, the Fe galvanic exchange reaction was found responsible for such coupled phase/morphology transition. Electrochemical characterization confirmed a distinct electrochemical behaviour of the nanocones, emphasizing the need to unravel the mechanism of 2D MnO2 transformation. Such mechanistic insights were gained by systematic and rigorous electron microscopy studies. The effect of the local chemical composition was determined by energy dispersive X-ray spectroscopy while electron energy loss spectroscopy unravelled the key influence of the oxidation state of Mn ions within nanosheets and nanocones. We propose and demonstrate a Mn2+-mediated oxidative mechanism of coupled morphology/phase transformation subjected to the equilibrium of Fe and Mn ions during galvanic exchange reaction. These findings contribute to the understanding of the growth and morphology/phase transformations of manganese oxide nanostructures, providing insights for the rational design of nanomaterials.","lang":"eng"}],"publication":"Journal of Materials Chemistry A"},{"citation":{"ama":"Schubert P, Gazzillo P, Patterson Z, et al. Static data-flow analysis for software product lines in C. <i>Automated Software Engineering</i>. 2022;29(1). doi:<a href=\"https://doi.org/10.1007/s10515-022-00333-1\">10.1007/s10515-022-00333-1</a>","chicago":"Schubert, Philipp, Paul Gazzillo, Zach Patterson, Julian Braha, Fabian Benedikt Schiebel, Ben Hermann, Shiyi Wei, and Eric Bodden. “Static Data-Flow Analysis for Software Product Lines in C.” <i>Automated Software Engineering</i> 29, no. 1 (2022). <a href=\"https://doi.org/10.1007/s10515-022-00333-1\">https://doi.org/10.1007/s10515-022-00333-1</a>.","ieee":"P. Schubert <i>et al.</i>, “Static data-flow analysis for software product lines in C,” <i>Automated Software Engineering</i>, vol. 29, no. 1, Art. no. 35, 2022, doi: <a href=\"https://doi.org/10.1007/s10515-022-00333-1\">10.1007/s10515-022-00333-1</a>.","mla":"Schubert, Philipp, et al. “Static Data-Flow Analysis for Software Product Lines in C.” <i>Automated Software Engineering</i>, vol. 29, no. 1, 35, Springer Science and Business Media LLC, 2022, doi:<a href=\"https://doi.org/10.1007/s10515-022-00333-1\">10.1007/s10515-022-00333-1</a>.","short":"P. Schubert, P. Gazzillo, Z. Patterson, J. Braha, F.B. Schiebel, B. Hermann, S. Wei, E. Bodden, Automated Software Engineering 29 (2022).","bibtex":"@article{Schubert_Gazzillo_Patterson_Braha_Schiebel_Hermann_Wei_Bodden_2022, title={Static data-flow analysis for software product lines in C}, volume={29}, DOI={<a href=\"https://doi.org/10.1007/s10515-022-00333-1\">10.1007/s10515-022-00333-1</a>}, number={135}, journal={Automated Software Engineering}, publisher={Springer Science and Business Media LLC}, author={Schubert, Philipp and Gazzillo, Paul and Patterson, Zach and Braha, Julian and Schiebel, Fabian Benedikt and Hermann, Ben and Wei, Shiyi and Bodden, Eric}, year={2022} }","apa":"Schubert, P., Gazzillo, P., Patterson, Z., Braha, J., Schiebel, F. B., Hermann, B., Wei, S., &#38; Bodden, E. (2022). Static data-flow analysis for software product lines in C. <i>Automated Software Engineering</i>, <i>29</i>(1), Article 35. <a href=\"https://doi.org/10.1007/s10515-022-00333-1\">https://doi.org/10.1007/s10515-022-00333-1</a>"},"intvolume":"        29","publication_status":"published","publication_identifier":{"issn":["0928-8910","1573-7535"]},"main_file_link":[{"url":"https://link.springer.com/article/10.1007/s10515-022-00333-1","open_access":"1"}],"doi":"10.1007/s10515-022-00333-1","author":[{"full_name":"Schubert, Philipp","id":"60543","last_name":"Schubert","orcid":"0000-0002-8674-1859","first_name":"Philipp"},{"first_name":"Paul","last_name":"Gazzillo","full_name":"Gazzillo, Paul"},{"first_name":"Zach","last_name":"Patterson","full_name":"Patterson, Zach"},{"last_name":"Braha","full_name":"Braha, Julian","first_name":"Julian"},{"full_name":"Schiebel, Fabian Benedikt","id":"55745","orcid":"0009-0008-6867-9802","last_name":"Schiebel","first_name":"Fabian Benedikt"},{"last_name":"Hermann","orcid":"0000-0001-9848-2017","full_name":"Hermann, Ben","id":"66173","first_name":"Ben"},{"first_name":"Shiyi","full_name":"Wei, Shiyi","last_name":"Wei"},{"first_name":"Eric","orcid":"0000-0003-3470-3647","last_name":"Bodden","full_name":"Bodden, Eric","id":"59256"}],"volume":29,"oa":"1","date_updated":"2025-12-04T10:42:38Z","status":"public","type":"journal_article","alternative_title":["Revoking the preprocessor’s special role"],"article_type":"original","article_number":"35","user_id":"15249","department":[{"_id":"76"}],"project":[{"name":"SFB 901 - B4: SFB 901 - Subproject B4","_id":"12"},{"name":"SFB 901 - B: SFB 901 - Project Area B","_id":"3"},{"name":"SFB 901: SFB 901","_id":"1"}],"_id":"30511","year":"2022","issue":"1","title":"Static data-flow analysis for software product lines in C","date_created":"2022-03-25T07:41:26Z","publisher":"Springer Science and Business Media LLC","abstract":[{"lang":"eng","text":"<jats:title>Abstract</jats:title><jats:p>Many critical codebases are written in C, and most of them use preprocessor directives to encode variability, effectively encoding software product lines. These preprocessor directives, however, challenge any static code analysis. SPLlift, a previously presented approach for analyzing software product lines, is limited to Java programs that use a rather simple feature encoding and to analysis problems with a finite and ideally small domain. Other approaches that allow the analysis of real-world C software product lines use special-purpose analyses, preventing the reuse of existing analysis infrastructures and ignoring the progress made by the static analysis community. This work presents <jats:sc>VarAlyzer</jats:sc>, a novel static analysis approach for software product lines. <jats:sc>VarAlyzer</jats:sc> first transforms preprocessor constructs to plain C while preserving their variability and semantics. It then solves any given distributive analysis problem on transformed product lines in a variability-aware manner. <jats:sc>VarAlyzer</jats:sc> ’s analysis results are annotated with feature constraints that encode in which configurations each result holds. Our experiments with 95 compilation units of OpenSSL show that applying <jats:sc>VarAlyzer</jats:sc> enables one to conduct inter-procedural, flow-, field- and context-sensitive data-flow analyses on entire product lines for the first time, outperforming the product-based approach for highly-configurable systems.</jats:p>"}],"publication":"Automated Software Engineering","language":[{"iso":"eng"}],"keyword":["inter-procedural static analysis","software product lines","preprocessor","LLVM","C/C++"]},{"language":[{"iso":"ger"}],"user_id":"28261","_id":"62847","status":"public","editor":[{"full_name":"Harmening , Anda-Lisa","last_name":"Harmening ","first_name":"Anda-Lisa"},{"first_name":"Stefanie","last_name":"Leinfellner","full_name":"Leinfellner, Stefanie"},{"last_name":"Meier","full_name":"Meier, Rebecca","first_name":"Rebecca"}],"publication":"Wissenstransfer. Aufgabe, Herausforderung und Chance kulturwissenschaftlicher Forschung","type":"book_chapter","title":"Die Rolle von Emotionen beim Wissenstransfer. Mediendidaktische Überlegungen zur Gestaltung von Online-Lehrangeboten in der Erwachsenenbildung","author":[{"first_name":"Claudia","last_name":"Kirschtein","full_name":"Kirschtein, Claudia","id":"28261"}],"date_created":"2025-12-04T11:58:12Z","publisher":"wbg","date_updated":"2025-12-04T11:58:49Z","page":"149-172","citation":{"apa":"Kirschtein, C. (2022). Die Rolle von Emotionen beim Wissenstransfer. Mediendidaktische Überlegungen zur Gestaltung von Online-Lehrangeboten in der Erwachsenenbildung. In A.-L. Harmening , S. Leinfellner, &#38; R. Meier (Eds.), <i>Wissenstransfer. Aufgabe, Herausforderung und Chance kulturwissenschaftlicher Forschung</i> (pp. 149–172). wbg.","short":"C. Kirschtein, in: A.-L. Harmening , S. Leinfellner, R. Meier (Eds.), Wissenstransfer. Aufgabe, Herausforderung und Chance kulturwissenschaftlicher Forschung, wbg, Darmstadt, 2022, pp. 149–172.","mla":"Kirschtein, Claudia. “Die Rolle von Emotionen beim Wissenstransfer. Mediendidaktische Überlegungen zur Gestaltung von Online-Lehrangeboten in der Erwachsenenbildung.” <i>Wissenstransfer. Aufgabe, Herausforderung und Chance kulturwissenschaftlicher Forschung</i>, edited by Anda-Lisa Harmening  et al., wbg, 2022, pp. 149–72.","bibtex":"@inbook{Kirschtein_2022, place={Darmstadt}, title={Die Rolle von Emotionen beim Wissenstransfer. Mediendidaktische Überlegungen zur Gestaltung von Online-Lehrangeboten in der Erwachsenenbildung}, booktitle={Wissenstransfer. Aufgabe, Herausforderung und Chance kulturwissenschaftlicher Forschung}, publisher={wbg}, author={Kirschtein, Claudia}, editor={Harmening , Anda-Lisa and Leinfellner, Stefanie and Meier, Rebecca}, year={2022}, pages={149–172} }","ieee":"C. Kirschtein, “Die Rolle von Emotionen beim Wissenstransfer. Mediendidaktische Überlegungen zur Gestaltung von Online-Lehrangeboten in der Erwachsenenbildung,” in <i>Wissenstransfer. Aufgabe, Herausforderung und Chance kulturwissenschaftlicher Forschung</i>, A.-L. Harmening , S. Leinfellner, and R. Meier, Eds. Darmstadt: wbg, 2022, pp. 149–172.","chicago":"Kirschtein, Claudia. “Die Rolle von Emotionen beim Wissenstransfer. Mediendidaktische Überlegungen zur Gestaltung von Online-Lehrangeboten in der Erwachsenenbildung.” In <i>Wissenstransfer. Aufgabe, Herausforderung und Chance kulturwissenschaftlicher Forschung</i>, edited by Anda-Lisa Harmening , Stefanie Leinfellner, and Rebecca Meier, 149–72. Darmstadt: wbg, 2022.","ama":"Kirschtein C. Die Rolle von Emotionen beim Wissenstransfer. Mediendidaktische Überlegungen zur Gestaltung von Online-Lehrangeboten in der Erwachsenenbildung. In: Harmening  A-L, Leinfellner S, Meier R, eds. <i>Wissenstransfer. Aufgabe, Herausforderung und Chance kulturwissenschaftlicher Forschung</i>. wbg; 2022:149-172."},"place":"Darmstadt","year":"2022","publication_identifier":{"isbn":["978-3-534-27585-4"]},"publication_status":"published"},{"language":[{"iso":"eng"}],"article_number":"201103","keyword":["Physics and Astronomy (miscellaneous)"],"user_id":"16199","department":[{"_id":"15"},{"_id":"170"},{"_id":"297"},{"_id":"705"},{"_id":"230"},{"_id":"429"},{"_id":"35"}],"project":[{"name":"TRR 142: TRR 142","_id":"53"},{"name":"TRR 142 - A: TRR 142 - Project Area A","_id":"54"},{"name":"TRR 142 - A4: TRR 142 - Subproject A4","_id":"61"},{"_id":"53","name":"TRR 142: Maßgeschneiderte nichtlineare Photonik: Von grundlegenden Konzepten zu funktionellen Strukturen"}],"_id":"34094","status":"public","type":"journal_article","publication":"Applied Physics Letters","doi":"10.1063/5.0093908","title":"Tilting nondispersive bands in an empty microcavity","date_created":"2022-11-16T12:29:11Z","author":[{"first_name":"Ying","last_name":"Gao","full_name":"Gao, Ying"},{"first_name":"Yao","last_name":"Li","full_name":"Li, Yao"},{"first_name":"Xuekai","full_name":"Ma, Xuekai","id":"59416","last_name":"Ma"},{"first_name":"Meini","last_name":"Gao","full_name":"Gao, Meini"},{"full_name":"Dai, Haitao","last_name":"Dai","first_name":"Haitao"},{"full_name":"Schumacher, Stefan","id":"27271","last_name":"Schumacher","orcid":"0000-0003-4042-4951","first_name":"Stefan"},{"first_name":"Tingge","full_name":"Gao, Tingge","last_name":"Gao"}],"volume":121,"date_updated":"2025-12-05T13:50:49Z","publisher":"AIP Publishing","citation":{"bibtex":"@article{Gao_Li_Ma_Gao_Dai_Schumacher_Gao_2022, title={Tilting nondispersive bands in an empty microcavity}, volume={121}, DOI={<a href=\"https://doi.org/10.1063/5.0093908\">10.1063/5.0093908</a>}, number={20201103}, journal={Applied Physics Letters}, publisher={AIP Publishing}, author={Gao, Ying and Li, Yao and Ma, Xuekai and Gao, Meini and Dai, Haitao and Schumacher, Stefan and Gao, Tingge}, year={2022} }","short":"Y. Gao, Y. Li, X. Ma, M. Gao, H. Dai, S. Schumacher, T. Gao, Applied Physics Letters 121 (2022).","mla":"Gao, Ying, et al. “Tilting Nondispersive Bands in an Empty Microcavity.” <i>Applied Physics Letters</i>, vol. 121, no. 20, 201103, AIP Publishing, 2022, doi:<a href=\"https://doi.org/10.1063/5.0093908\">10.1063/5.0093908</a>.","apa":"Gao, Y., Li, Y., Ma, X., Gao, M., Dai, H., Schumacher, S., &#38; Gao, T. (2022). Tilting nondispersive bands in an empty microcavity. <i>Applied Physics Letters</i>, <i>121</i>(20), Article 201103. <a href=\"https://doi.org/10.1063/5.0093908\">https://doi.org/10.1063/5.0093908</a>","ieee":"Y. Gao <i>et al.</i>, “Tilting nondispersive bands in an empty microcavity,” <i>Applied Physics Letters</i>, vol. 121, no. 20, Art. no. 201103, 2022, doi: <a href=\"https://doi.org/10.1063/5.0093908\">10.1063/5.0093908</a>.","chicago":"Gao, Ying, Yao Li, Xuekai Ma, Meini Gao, Haitao Dai, Stefan Schumacher, and Tingge Gao. “Tilting Nondispersive Bands in an Empty Microcavity.” <i>Applied Physics Letters</i> 121, no. 20 (2022). <a href=\"https://doi.org/10.1063/5.0093908\">https://doi.org/10.1063/5.0093908</a>.","ama":"Gao Y, Li Y, Ma X, et al. Tilting nondispersive bands in an empty microcavity. <i>Applied Physics Letters</i>. 2022;121(20). doi:<a href=\"https://doi.org/10.1063/5.0093908\">10.1063/5.0093908</a>"},"intvolume":"       121","year":"2022","issue":"20","publication_status":"published","publication_identifier":{"issn":["0003-6951","1077-3118"]}},{"year":"2022","page":"2079-2086","intvolume":"         9","citation":{"ama":"Li Y, Ma X, Hatzopoulos Z, Savvidis PG, Schumacher S, Gao T. Switching Off a Microcavity Polariton Condensate near the Exceptional Point. <i>ACS Photonics</i>. 2022;9(6):2079-2086. doi:<a href=\"https://doi.org/10.1021/acsphotonics.2c00288\">10.1021/acsphotonics.2c00288</a>","chicago":"Li, Yao, Xuekai Ma, Zaharias Hatzopoulos, Pavlos G. Savvidis, Stefan Schumacher, and Tingge Gao. “Switching Off a Microcavity Polariton Condensate near the Exceptional Point.” <i>ACS Photonics</i> 9, no. 6 (2022): 2079–86. <a href=\"https://doi.org/10.1021/acsphotonics.2c00288\">https://doi.org/10.1021/acsphotonics.2c00288</a>.","ieee":"Y. Li, X. Ma, Z. Hatzopoulos, P. G. Savvidis, S. Schumacher, and T. Gao, “Switching Off a Microcavity Polariton Condensate near the Exceptional Point,” <i>ACS Photonics</i>, vol. 9, no. 6, pp. 2079–2086, 2022, doi: <a href=\"https://doi.org/10.1021/acsphotonics.2c00288\">10.1021/acsphotonics.2c00288</a>.","apa":"Li, Y., Ma, X., Hatzopoulos, Z., Savvidis, P. G., Schumacher, S., &#38; Gao, T. (2022). Switching Off a Microcavity Polariton Condensate near the Exceptional Point. <i>ACS Photonics</i>, <i>9</i>(6), 2079–2086. <a href=\"https://doi.org/10.1021/acsphotonics.2c00288\">https://doi.org/10.1021/acsphotonics.2c00288</a>","short":"Y. Li, X. Ma, Z. Hatzopoulos, P.G. Savvidis, S. Schumacher, T. Gao, ACS Photonics 9 (2022) 2079–2086.","bibtex":"@article{Li_Ma_Hatzopoulos_Savvidis_Schumacher_Gao_2022, title={Switching Off a Microcavity Polariton Condensate near the Exceptional Point}, volume={9}, DOI={<a href=\"https://doi.org/10.1021/acsphotonics.2c00288\">10.1021/acsphotonics.2c00288</a>}, number={6}, journal={ACS Photonics}, publisher={American Chemical Society (ACS)}, author={Li, Yao and Ma, Xuekai and Hatzopoulos, Zaharias and Savvidis, Pavlos G. and Schumacher, Stefan and Gao, Tingge}, year={2022}, pages={2079–2086} }","mla":"Li, Yao, et al. “Switching Off a Microcavity Polariton Condensate near the Exceptional Point.” <i>ACS Photonics</i>, vol. 9, no. 6, American Chemical Society (ACS), 2022, pp. 2079–86, doi:<a href=\"https://doi.org/10.1021/acsphotonics.2c00288\">10.1021/acsphotonics.2c00288</a>."},"publication_identifier":{"issn":["2330-4022","2330-4022"]},"publication_status":"published","issue":"6","title":"Switching Off a Microcavity Polariton Condensate near the Exceptional Point","doi":"10.1021/acsphotonics.2c00288","publisher":"American Chemical Society (ACS)","date_updated":"2025-12-05T13:51:31Z","volume":9,"author":[{"full_name":"Li, Yao","last_name":"Li","first_name":"Yao"},{"first_name":"Xuekai","full_name":"Ma, Xuekai","id":"59416","last_name":"Ma"},{"full_name":"Hatzopoulos, Zaharias","last_name":"Hatzopoulos","first_name":"Zaharias"},{"last_name":"Savvidis","full_name":"Savvidis, Pavlos G.","first_name":"Pavlos G."},{"orcid":"0000-0003-4042-4951","last_name":"Schumacher","full_name":"Schumacher, Stefan","id":"27271","first_name":"Stefan"},{"full_name":"Gao, Tingge","last_name":"Gao","first_name":"Tingge"}],"date_created":"2022-06-19T19:26:12Z","status":"public","publication":"ACS Photonics","type":"journal_article","language":[{"iso":"eng"}],"_id":"31937","project":[{"_id":"52","name":"PC2: Computing Resources Provided by the Paderborn Center for Parallel Computing"},{"name":"TRR 142: TRR 142","_id":"53"},{"name":"TRR 142 - A: TRR 142 - Project Area A","_id":"54"},{"name":"TRR 142 - A4: TRR 142 - Subproject A4","_id":"61"},{"name":"TRR 142: Maßgeschneiderte nichtlineare Photonik: Von grundlegenden Konzepten zu funktionellen Strukturen","_id":"53"}],"department":[{"_id":"15"},{"_id":"170"},{"_id":"297"},{"_id":"705"},{"_id":"230"},{"_id":"429"},{"_id":"35"}],"user_id":"16199"},{"department":[{"_id":"15"},{"_id":"170"},{"_id":"295"},{"_id":"230"},{"_id":"429"},{"_id":"35"},{"_id":"790"}],"user_id":"16199","_id":"37713","project":[{"name":"TRR 142: TRR 142","_id":"53"},{"_id":"54","name":"TRR 142 - A: TRR 142 - Project Area A"},{"_id":"55","name":"TRR 142 - B: TRR 142 - Project Area B"},{"_id":"166","name":"TRR 142 - A11: TRR 142 - Subproject A11"},{"name":"TRR 142 - B07: TRR 142 - Subproject B07","_id":"168"},{"name":"PC2: Computing Resources Provided by the Paderborn Center for Parallel Computing","_id":"52"},{"name":"TRR 142: Maßgeschneiderte nichtlineare Photonik: Von grundlegenden Konzepten zu funktionellen Strukturen","_id":"53"}],"language":[{"iso":"eng"}],"keyword":["Mechanical Engineering","Condensed Matter Physics","General Materials Science","General Chemistry","Bioengineering"],"publication":"Nano Letters","type":"journal_article","status":"public","volume":22,"author":[{"full_name":"Murzakhanov, Fadis F.","last_name":"Murzakhanov","first_name":"Fadis F."},{"first_name":"Georgy Vladimirovich","last_name":"Mamin","full_name":"Mamin, Georgy Vladimirovich"},{"first_name":"Sergei Borisovich","full_name":"Orlinskii, Sergei Borisovich","last_name":"Orlinskii"},{"last_name":"Gerstmann","orcid":"0000-0002-4476-223X","id":"171","full_name":"Gerstmann, Uwe","first_name":"Uwe"},{"first_name":"Wolf Gero","last_name":"Schmidt","orcid":"0000-0002-2717-5076","id":"468","full_name":"Schmidt, Wolf Gero"},{"id":"65612","full_name":"Biktagirov, Timur","last_name":"Biktagirov","first_name":"Timur"},{"last_name":"Aharonovich","full_name":"Aharonovich, Igor","first_name":"Igor"},{"first_name":"Andreas","full_name":"Gottscholl, Andreas","last_name":"Gottscholl"},{"last_name":"Sperlich","full_name":"Sperlich, Andreas","first_name":"Andreas"},{"first_name":"Vladimir","last_name":"Dyakonov","full_name":"Dyakonov, Vladimir"},{"last_name":"Soltamov","full_name":"Soltamov, Victor A.","first_name":"Victor A."}],"date_created":"2023-01-20T11:21:22Z","date_updated":"2025-12-05T13:57:24Z","publisher":"American Chemical Society (ACS)","doi":"10.1021/acs.nanolett.1c04610","title":"Electron–Nuclear Coherent Coupling and Nuclear Spin Readout through Optically Polarized V<sub>B</sub><sup>–</sup> Spin States in hBN","issue":"7","publication_identifier":{"issn":["1530-6984","1530-6992"]},"publication_status":"published","intvolume":"        22","page":"2718-2724","citation":{"mla":"Murzakhanov, Fadis F., et al. “Electron–Nuclear Coherent Coupling and Nuclear Spin Readout through Optically Polarized V<sub>B</sub><sup>–</sup> Spin States in HBN.” <i>Nano Letters</i>, vol. 22, no. 7, American Chemical Society (ACS), 2022, pp. 2718–24, doi:<a href=\"https://doi.org/10.1021/acs.nanolett.1c04610\">10.1021/acs.nanolett.1c04610</a>.","bibtex":"@article{Murzakhanov_Mamin_Orlinskii_Gerstmann_Schmidt_Biktagirov_Aharonovich_Gottscholl_Sperlich_Dyakonov_et al._2022, title={Electron–Nuclear Coherent Coupling and Nuclear Spin Readout through Optically Polarized V<sub>B</sub><sup>–</sup> Spin States in hBN}, volume={22}, DOI={<a href=\"https://doi.org/10.1021/acs.nanolett.1c04610\">10.1021/acs.nanolett.1c04610</a>}, number={7}, journal={Nano Letters}, publisher={American Chemical Society (ACS)}, author={Murzakhanov, Fadis F. and Mamin, Georgy Vladimirovich and Orlinskii, Sergei Borisovich and Gerstmann, Uwe and Schmidt, Wolf Gero and Biktagirov, Timur and Aharonovich, Igor and Gottscholl, Andreas and Sperlich, Andreas and Dyakonov, Vladimir and et al.}, year={2022}, pages={2718–2724} }","short":"F.F. Murzakhanov, G.V. Mamin, S.B. Orlinskii, U. Gerstmann, W.G. Schmidt, T. Biktagirov, I. Aharonovich, A. Gottscholl, A. Sperlich, V. Dyakonov, V.A. Soltamov, Nano Letters 22 (2022) 2718–2724.","apa":"Murzakhanov, F. F., Mamin, G. V., Orlinskii, S. B., Gerstmann, U., Schmidt, W. G., Biktagirov, T., Aharonovich, I., Gottscholl, A., Sperlich, A., Dyakonov, V., &#38; Soltamov, V. A. (2022). Electron–Nuclear Coherent Coupling and Nuclear Spin Readout through Optically Polarized V<sub>B</sub><sup>–</sup> Spin States in hBN. <i>Nano Letters</i>, <i>22</i>(7), 2718–2724. <a href=\"https://doi.org/10.1021/acs.nanolett.1c04610\">https://doi.org/10.1021/acs.nanolett.1c04610</a>","ama":"Murzakhanov FF, Mamin GV, Orlinskii SB, et al. Electron–Nuclear Coherent Coupling and Nuclear Spin Readout through Optically Polarized V<sub>B</sub><sup>–</sup> Spin States in hBN. <i>Nano Letters</i>. 2022;22(7):2718-2724. doi:<a href=\"https://doi.org/10.1021/acs.nanolett.1c04610\">10.1021/acs.nanolett.1c04610</a>","chicago":"Murzakhanov, Fadis F., Georgy Vladimirovich Mamin, Sergei Borisovich Orlinskii, Uwe Gerstmann, Wolf Gero Schmidt, Timur Biktagirov, Igor Aharonovich, et al. “Electron–Nuclear Coherent Coupling and Nuclear Spin Readout through Optically Polarized V<sub>B</sub><sup>–</sup> Spin States in HBN.” <i>Nano Letters</i> 22, no. 7 (2022): 2718–24. <a href=\"https://doi.org/10.1021/acs.nanolett.1c04610\">https://doi.org/10.1021/acs.nanolett.1c04610</a>.","ieee":"F. F. Murzakhanov <i>et al.</i>, “Electron–Nuclear Coherent Coupling and Nuclear Spin Readout through Optically Polarized V<sub>B</sub><sup>–</sup> Spin States in hBN,” <i>Nano Letters</i>, vol. 22, no. 7, pp. 2718–2724, 2022, doi: <a href=\"https://doi.org/10.1021/acs.nanolett.1c04610\">10.1021/acs.nanolett.1c04610</a>."},"year":"2022"},{"volume":9,"date_created":"2022-08-22T19:05:04Z","author":[{"last_name":"Long","full_name":"Long, Teng","first_name":"Teng"},{"first_name":"Xuekai","id":"59416","full_name":"Ma, Xuekai","last_name":"Ma"},{"full_name":"Ren, Jiahuan","last_name":"Ren","first_name":"Jiahuan"},{"full_name":"Li, Feng","last_name":"Li","first_name":"Feng"},{"first_name":"Qing","last_name":"Liao","full_name":"Liao, Qing"},{"first_name":"Stefan","last_name":"Schumacher","orcid":"0000-0003-4042-4951","id":"27271","full_name":"Schumacher, Stefan"},{"first_name":"Guillaume","last_name":"Malpuech","full_name":"Malpuech, Guillaume"},{"full_name":"Solnyshkov, Dmitry","last_name":"Solnyshkov","first_name":"Dmitry"},{"last_name":"Fu","full_name":"Fu, Hongbing","first_name":"Hongbing"}],"date_updated":"2025-12-05T13:56:26Z","publisher":"Wiley","doi":"10.1002/advs.202203588","title":"Helical Polariton Lasing from Topological Valleys in an Organic Crystalline Microcavity","issue":"29","publication_identifier":{"issn":["2198-3844","2198-3844"]},"publication_status":"published","intvolume":"         9","citation":{"mla":"Long, Teng, et al. “Helical Polariton Lasing from Topological Valleys in an Organic Crystalline Microcavity.” <i>Advanced Science</i>, vol. 9, no. 29, 2203588, Wiley, 2022, doi:<a href=\"https://doi.org/10.1002/advs.202203588\">10.1002/advs.202203588</a>.","short":"T. Long, X. Ma, J. Ren, F. Li, Q. Liao, S. Schumacher, G. Malpuech, D. Solnyshkov, H. Fu, Advanced Science 9 (2022).","bibtex":"@article{Long_Ma_Ren_Li_Liao_Schumacher_Malpuech_Solnyshkov_Fu_2022, title={Helical Polariton Lasing from Topological Valleys in an Organic Crystalline Microcavity}, volume={9}, DOI={<a href=\"https://doi.org/10.1002/advs.202203588\">10.1002/advs.202203588</a>}, number={292203588}, journal={Advanced Science}, publisher={Wiley}, author={Long, Teng and Ma, Xuekai and Ren, Jiahuan and Li, Feng and Liao, Qing and Schumacher, Stefan and Malpuech, Guillaume and Solnyshkov, Dmitry and Fu, Hongbing}, year={2022} }","apa":"Long, T., Ma, X., Ren, J., Li, F., Liao, Q., Schumacher, S., Malpuech, G., Solnyshkov, D., &#38; Fu, H. (2022). Helical Polariton Lasing from Topological Valleys in an Organic Crystalline Microcavity. <i>Advanced Science</i>, <i>9</i>(29), Article 2203588. <a href=\"https://doi.org/10.1002/advs.202203588\">https://doi.org/10.1002/advs.202203588</a>","ieee":"T. Long <i>et al.</i>, “Helical Polariton Lasing from Topological Valleys in an Organic Crystalline Microcavity,” <i>Advanced Science</i>, vol. 9, no. 29, Art. no. 2203588, 2022, doi: <a href=\"https://doi.org/10.1002/advs.202203588\">10.1002/advs.202203588</a>.","chicago":"Long, Teng, Xuekai Ma, Jiahuan Ren, Feng Li, Qing Liao, Stefan Schumacher, Guillaume Malpuech, Dmitry Solnyshkov, and Hongbing Fu. “Helical Polariton Lasing from Topological Valleys in an Organic Crystalline Microcavity.” <i>Advanced Science</i> 9, no. 29 (2022). <a href=\"https://doi.org/10.1002/advs.202203588\">https://doi.org/10.1002/advs.202203588</a>.","ama":"Long T, Ma X, Ren J, et al. Helical Polariton Lasing from Topological Valleys in an Organic Crystalline Microcavity. <i>Advanced Science</i>. 2022;9(29). doi:<a href=\"https://doi.org/10.1002/advs.202203588\">10.1002/advs.202203588</a>"},"year":"2022","department":[{"_id":"15"},{"_id":"170"},{"_id":"297"},{"_id":"705"},{"_id":"230"},{"_id":"429"},{"_id":"35"}],"user_id":"16199","_id":"33080","project":[{"_id":"53","name":"TRR 142: TRR 142"},{"name":"TRR 142 - A: TRR 142 - Project Area A","_id":"54"},{"_id":"61","name":"TRR 142 - A4: TRR 142 - Subproject A4"},{"_id":"53","name":"TRR 142: Maßgeschneiderte nichtlineare Photonik: Von grundlegenden Konzepten zu funktionellen Strukturen"}],"language":[{"iso":"eng"}],"keyword":["General Physics and Astronomy","General Engineering","Biochemistry","Genetics and Molecular Biology (miscellaneous)","General Materials Science","General Chemical Engineering","Medicine (miscellaneous)"],"article_number":"2203588","publication":"Advanced Science","type":"journal_article","status":"public"},{"status":"public","type":"journal_article","publication":"Nature Communications","language":[{"iso":"eng"}],"article_number":"3785","keyword":["General Physics and Astronomy","General Biochemistry","Genetics and Molecular Biology","General Chemistry","Multidisciplinary"],"user_id":"16199","department":[{"_id":"15"},{"_id":"170"},{"_id":"297"},{"_id":"705"},{"_id":"230"},{"_id":"429"},{"_id":"623"},{"_id":"35"}],"project":[{"_id":"53","name":"TRR 142: TRR 142"},{"_id":"54","name":"TRR 142 - A: TRR 142 - Project Area A"},{"name":"TRR 142 - A4: TRR 142 - Subproject A4","_id":"61"},{"_id":"53","name":"TRR 142: Maßgeschneiderte nichtlineare Photonik: Von grundlegenden Konzepten zu funktionellen Strukturen"}],"_id":"32310","citation":{"ieee":"Y. Li <i>et al.</i>, “Manipulating polariton condensates by Rashba-Dresselhaus coupling at room temperature,” <i>Nature Communications</i>, vol. 13, no. 1, Art. no. 3785, 2022, doi: <a href=\"https://doi.org/10.1038/s41467-022-31529-4\">10.1038/s41467-022-31529-4</a>.","chicago":"Li, Yao, Xuekai Ma, Xiaokun Zhai, Meini Gao, Haitao Dai, Stefan Schumacher, and Tingge Gao. “Manipulating Polariton Condensates by Rashba-Dresselhaus Coupling at Room Temperature.” <i>Nature Communications</i> 13, no. 1 (2022). <a href=\"https://doi.org/10.1038/s41467-022-31529-4\">https://doi.org/10.1038/s41467-022-31529-4</a>.","ama":"Li Y, Ma X, Zhai X, et al. Manipulating polariton condensates by Rashba-Dresselhaus coupling at room temperature. <i>Nature Communications</i>. 2022;13(1). doi:<a href=\"https://doi.org/10.1038/s41467-022-31529-4\">10.1038/s41467-022-31529-4</a>","apa":"Li, Y., Ma, X., Zhai, X., Gao, M., Dai, H., Schumacher, S., &#38; Gao, T. (2022). Manipulating polariton condensates by Rashba-Dresselhaus coupling at room temperature. <i>Nature Communications</i>, <i>13</i>(1), Article 3785. <a href=\"https://doi.org/10.1038/s41467-022-31529-4\">https://doi.org/10.1038/s41467-022-31529-4</a>","short":"Y. Li, X. Ma, X. Zhai, M. Gao, H. Dai, S. Schumacher, T. Gao, Nature Communications 13 (2022).","bibtex":"@article{Li_Ma_Zhai_Gao_Dai_Schumacher_Gao_2022, title={Manipulating polariton condensates by Rashba-Dresselhaus coupling at room temperature}, volume={13}, DOI={<a href=\"https://doi.org/10.1038/s41467-022-31529-4\">10.1038/s41467-022-31529-4</a>}, number={13785}, journal={Nature Communications}, publisher={Springer Science and Business Media LLC}, author={Li, Yao and Ma, Xuekai and Zhai, Xiaokun and Gao, Meini and Dai, Haitao and Schumacher, Stefan and Gao, Tingge}, year={2022} }","mla":"Li, Yao, et al. “Manipulating Polariton Condensates by Rashba-Dresselhaus Coupling at Room Temperature.” <i>Nature Communications</i>, vol. 13, no. 1, 3785, Springer Science and Business Media LLC, 2022, doi:<a href=\"https://doi.org/10.1038/s41467-022-31529-4\">10.1038/s41467-022-31529-4</a>."},"intvolume":"        13","year":"2022","issue":"1","publication_status":"published","publication_identifier":{"issn":["2041-1723"]},"doi":"10.1038/s41467-022-31529-4","title":"Manipulating polariton condensates by Rashba-Dresselhaus coupling at room temperature","author":[{"last_name":"Li","full_name":"Li, Yao","first_name":"Yao"},{"full_name":"Ma, Xuekai","id":"59416","last_name":"Ma","first_name":"Xuekai"},{"first_name":"Xiaokun","full_name":"Zhai, Xiaokun","last_name":"Zhai"},{"last_name":"Gao","full_name":"Gao, Meini","first_name":"Meini"},{"first_name":"Haitao","last_name":"Dai","full_name":"Dai, Haitao"},{"full_name":"Schumacher, Stefan","id":"27271","last_name":"Schumacher","orcid":"0000-0003-4042-4951","first_name":"Stefan"},{"full_name":"Gao, Tingge","last_name":"Gao","first_name":"Tingge"}],"date_created":"2022-07-01T09:12:53Z","volume":13,"publisher":"Springer Science and Business Media LLC","date_updated":"2025-12-05T13:54:19Z"},{"user_id":"16199","department":[{"_id":"15"},{"_id":"170"},{"_id":"297"},{"_id":"705"},{"_id":"230"},{"_id":"429"},{"_id":"35"}],"project":[{"name":"TRR 142: TRR 142","_id":"53"},{"_id":"54","name":"TRR 142 - A: TRR 142 - Project Area A"},{"name":"TRR 142 - A4: TRR 142 - Subproject A4","_id":"61"},{"name":"TRR 142: Maßgeschneiderte nichtlineare Photonik: Von grundlegenden Konzepten zu funktionellen Strukturen","_id":"53"}],"_id":"32148","language":[{"iso":"eng"}],"keyword":["Atomic and Molecular Physics","and Optics"],"type":"journal_article","publication":"Optics Letters","status":"public","author":[{"first_name":"Xinghui","last_name":"Gao","full_name":"Gao, Xinghui"},{"full_name":"Hu, Wei","last_name":"Hu","first_name":"Wei"},{"first_name":"Stefan","full_name":"Schumacher, Stefan","id":"27271","orcid":"0000-0003-4042-4951","last_name":"Schumacher"},{"id":"59416","full_name":"Ma, Xuekai","last_name":"Ma","first_name":"Xuekai"}],"date_created":"2022-06-24T07:38:11Z","volume":47,"publisher":"Optica Publishing Group","date_updated":"2025-12-05T13:55:22Z","doi":"10.1364/ol.457724","title":"Unidirectional vortex waveguides and multistable vortex pairs in polariton condensates","issue":"13","publication_status":"published","publication_identifier":{"issn":["0146-9592","1539-4794"]},"citation":{"chicago":"Gao, Xinghui, Wei Hu, Stefan Schumacher, and Xuekai Ma. “Unidirectional Vortex Waveguides and Multistable Vortex Pairs in Polariton Condensates.” <i>Optics Letters</i> 47, no. 13 (2022): 3235–38. <a href=\"https://doi.org/10.1364/ol.457724\">https://doi.org/10.1364/ol.457724</a>.","ieee":"X. Gao, W. Hu, S. Schumacher, and X. Ma, “Unidirectional vortex waveguides and multistable vortex pairs in polariton condensates,” <i>Optics Letters</i>, vol. 47, no. 13, pp. 3235–3238, 2022, doi: <a href=\"https://doi.org/10.1364/ol.457724\">10.1364/ol.457724</a>.","ama":"Gao X, Hu W, Schumacher S, Ma X. Unidirectional vortex waveguides and multistable vortex pairs in polariton condensates. <i>Optics Letters</i>. 2022;47(13):3235-3238. doi:<a href=\"https://doi.org/10.1364/ol.457724\">10.1364/ol.457724</a>","apa":"Gao, X., Hu, W., Schumacher, S., &#38; Ma, X. (2022). Unidirectional vortex waveguides and multistable vortex pairs in polariton condensates. <i>Optics Letters</i>, <i>47</i>(13), 3235–3238. <a href=\"https://doi.org/10.1364/ol.457724\">https://doi.org/10.1364/ol.457724</a>","bibtex":"@article{Gao_Hu_Schumacher_Ma_2022, title={Unidirectional vortex waveguides and multistable vortex pairs in polariton condensates}, volume={47}, DOI={<a href=\"https://doi.org/10.1364/ol.457724\">10.1364/ol.457724</a>}, number={13}, journal={Optics Letters}, publisher={Optica Publishing Group}, author={Gao, Xinghui and Hu, Wei and Schumacher, Stefan and Ma, Xuekai}, year={2022}, pages={3235–3238} }","mla":"Gao, Xinghui, et al. “Unidirectional Vortex Waveguides and Multistable Vortex Pairs in Polariton Condensates.” <i>Optics Letters</i>, vol. 47, no. 13, Optica Publishing Group, 2022, pp. 3235–38, doi:<a href=\"https://doi.org/10.1364/ol.457724\">10.1364/ol.457724</a>.","short":"X. Gao, W. Hu, S. Schumacher, X. Ma, Optics Letters 47 (2022) 3235–3238."},"intvolume":"        47","page":"3235-3238","year":"2022"},{"abstract":[{"text":"Lithium niobate (LiNbO3), a material frequently used in optical applications, hosts different kinds of polarons that significantly affect many of its physical properties. In this study, a variety of electron polarons, namely free, bound, and bipolarons, are analyzed using first-principles calculations. We perform a full structural optimization based on density-functional theory for selected intrinsic defects with special attention to the role of symmetry-breaking distortions that lower the total energy. The cations hosting the various polarons relax to a different degree, with a larger relaxation corresponding to a larger gap between the defect level and the conduction-band edge. The projected density of states reveals that the polaron states are formerly empty Nb 4d states lowered into the band gap. Optical absorption spectra are derived within the independent-particle approximation, corrected by the GW approximation that yields a wider band gap and by including excitonic effects within the Bethe-Salpeter equation. Comparing the calculated spectra with the density of states, we find that the defect peak observed in the optical absorption stems from transitions between the defect level and a continuum of empty Nb 4d states. Signatures of polarons are further analyzed in the reflectivity and other experimentally measurable optical coefficients.","lang":"eng"}],"publication":"New Trends in Lithium Niobate: From Bulk to Nanocrystals","ddc":["530"],"language":[{"iso":"eng"}],"year":"2022","quality_controlled":"1","title":"Electron polarons in lithium niobate: Charge localization, lattice deformation, and optical response","publisher":"MDPI","date_created":"2022-03-13T15:28:47Z","editor":[{"full_name":"Corradi, Gábor","last_name":"Corradi","first_name":"Gábor"},{"last_name":"Kovács","full_name":"Kovács, László","first_name":"László"}],"status":"public","type":"book_chapter","_id":"30288","project":[{"name":"TRR 142: TRR 142","_id":"53"},{"_id":"55","name":"TRR 142 - B: TRR 142 - Project Area B"},{"name":"TRR 142 - B4: TRR 142 - Subproject B4","_id":"69"},{"_id":"54","name":"TRR 142 - A: TRR 142 - Project Area A"},{"name":"TRR 142 - A11: TRR 142 - Subproject A11","_id":"166"},{"_id":"168","name":"TRR 142 - B07: TRR 142 - Subproject B07"},{"name":"PC2: Computing Resources Provided by the Paderborn Center for Parallel Computing","_id":"52"},{"_id":"53","name":"TRR 142: Maßgeschneiderte nichtlineare Photonik: Von grundlegenden Konzepten zu funktionellen Strukturen"}],"department":[{"_id":"296"},{"_id":"230"},{"_id":"429"},{"_id":"295"},{"_id":"15"},{"_id":"170"},{"_id":"35"},{"_id":"790"}],"user_id":"16199","place":"Basel","page":"231-248","citation":{"short":"F. Schmidt, A.L. Kozub, U. Gerstmann, W.G. Schmidt, A. Schindlmayr, in: G. Corradi, L. Kovács (Eds.), New Trends in Lithium Niobate: From Bulk to Nanocrystals, MDPI, Basel, 2022, pp. 231–248.","mla":"Schmidt, Falko, et al. “Electron Polarons in Lithium Niobate: Charge Localization, Lattice Deformation, and Optical Response.” <i>New Trends in Lithium Niobate: From Bulk to Nanocrystals</i>, edited by Gábor Corradi and László Kovács, MDPI, 2022, pp. 231–48, doi:<a href=\"https://doi.org/10.3390/books978-3-0365-3339-1\">10.3390/books978-3-0365-3339-1</a>.","bibtex":"@inbook{Schmidt_Kozub_Gerstmann_Schmidt_Schindlmayr_2022, place={Basel}, title={Electron polarons in lithium niobate: Charge localization, lattice deformation, and optical response}, DOI={<a href=\"https://doi.org/10.3390/books978-3-0365-3339-1\">10.3390/books978-3-0365-3339-1</a>}, booktitle={New Trends in Lithium Niobate: From Bulk to Nanocrystals}, publisher={MDPI}, author={Schmidt, Falko and Kozub, Agnieszka L. and Gerstmann, Uwe and Schmidt, Wolf Gero and Schindlmayr, Arno}, editor={Corradi, Gábor and Kovács, László}, year={2022}, pages={231–248} }","apa":"Schmidt, F., Kozub, A. L., Gerstmann, U., Schmidt, W. G., &#38; Schindlmayr, A. (2022). Electron polarons in lithium niobate: Charge localization, lattice deformation, and optical response. In G. Corradi &#38; L. Kovács (Eds.), <i>New Trends in Lithium Niobate: From Bulk to Nanocrystals</i> (pp. 231–248). MDPI. <a href=\"https://doi.org/10.3390/books978-3-0365-3339-1\">https://doi.org/10.3390/books978-3-0365-3339-1</a>","ama":"Schmidt F, Kozub AL, Gerstmann U, Schmidt WG, Schindlmayr A. Electron polarons in lithium niobate: Charge localization, lattice deformation, and optical response. In: Corradi G, Kovács L, eds. <i>New Trends in Lithium Niobate: From Bulk to Nanocrystals</i>. MDPI; 2022:231-248. doi:<a href=\"https://doi.org/10.3390/books978-3-0365-3339-1\">10.3390/books978-3-0365-3339-1</a>","ieee":"F. Schmidt, A. L. Kozub, U. Gerstmann, W. G. Schmidt, and A. Schindlmayr, “Electron polarons in lithium niobate: Charge localization, lattice deformation, and optical response,” in <i>New Trends in Lithium Niobate: From Bulk to Nanocrystals</i>, G. Corradi and L. Kovács, Eds. Basel: MDPI, 2022, pp. 231–248.","chicago":"Schmidt, Falko, Agnieszka L. Kozub, Uwe Gerstmann, Wolf Gero Schmidt, and Arno Schindlmayr. “Electron Polarons in Lithium Niobate: Charge Localization, Lattice Deformation, and Optical Response.” In <i>New Trends in Lithium Niobate: From Bulk to Nanocrystals</i>, edited by Gábor Corradi and László Kovács, 231–48. Basel: MDPI, 2022. <a href=\"https://doi.org/10.3390/books978-3-0365-3339-1\">https://doi.org/10.3390/books978-3-0365-3339-1</a>."},"publication_identifier":{"eisbn":["978-3-0365-3339-1"],"isbn":["978-3-0365-3340-7"]},"publication_status":"published","doi":"10.3390/books978-3-0365-3339-1","date_updated":"2025-12-05T14:00:04Z","author":[{"first_name":"Falko","orcid":"0000-0002-5071-5528","last_name":"Schmidt","full_name":"Schmidt, Falko","id":"35251"},{"first_name":"Agnieszka L.","last_name":"Kozub","orcid":"https://orcid.org/0000-0001-6584-0201","full_name":"Kozub, Agnieszka L.","id":"77566"},{"id":"171","full_name":"Gerstmann, Uwe","last_name":"Gerstmann","orcid":"0000-0002-4476-223X","first_name":"Uwe"},{"first_name":"Wolf Gero","id":"468","full_name":"Schmidt, Wolf Gero","last_name":"Schmidt","orcid":"0000-0002-2717-5076"},{"orcid":"0000-0002-4855-071X","last_name":"Schindlmayr","full_name":"Schindlmayr, Arno","id":"458","first_name":"Arno"}]},{"status":"public","type":"journal_article","article_type":"original","department":[{"_id":"282"},{"_id":"208"},{"_id":"640"}],"user_id":"71994","_id":"47627","page":"1257-1279","intvolume":"        85","citation":{"ama":"Mordhorst L, Jenert T. Curricular integration of academic and vocational education: a theory-based empirical typology of dual study programmes in Germany. <i>Higher Education</i>. 2022;85(6):1257-1279. doi:<a href=\"https://doi.org/10.1007/s10734-022-00889-7\">10.1007/s10734-022-00889-7</a>","ieee":"L. Mordhorst and T. Jenert, “Curricular integration of academic and vocational education: a theory-based empirical typology of dual study programmes in Germany,” <i>Higher Education</i>, vol. 85, no. 6, pp. 1257–1279, 2022, doi: <a href=\"https://doi.org/10.1007/s10734-022-00889-7\">10.1007/s10734-022-00889-7</a>.","chicago":"Mordhorst, Lisa, and Tobias Jenert. “Curricular Integration of Academic and Vocational Education: A Theory-Based Empirical Typology of Dual Study Programmes in Germany.” <i>Higher Education</i> 85, no. 6 (2022): 1257–79. <a href=\"https://doi.org/10.1007/s10734-022-00889-7\">https://doi.org/10.1007/s10734-022-00889-7</a>.","short":"L. Mordhorst, T. Jenert, Higher Education 85 (2022) 1257–1279.","mla":"Mordhorst, Lisa, and Tobias Jenert. “Curricular Integration of Academic and Vocational Education: A Theory-Based Empirical Typology of Dual Study Programmes in Germany.” <i>Higher Education</i>, vol. 85, no. 6, Springer Science and Business Media LLC, 2022, pp. 1257–79, doi:<a href=\"https://doi.org/10.1007/s10734-022-00889-7\">10.1007/s10734-022-00889-7</a>.","bibtex":"@article{Mordhorst_Jenert_2022, title={Curricular integration of academic and vocational education: a theory-based empirical typology of dual study programmes in Germany}, volume={85}, DOI={<a href=\"https://doi.org/10.1007/s10734-022-00889-7\">10.1007/s10734-022-00889-7</a>}, number={6}, journal={Higher Education}, publisher={Springer Science and Business Media LLC}, author={Mordhorst, Lisa and Jenert, Tobias}, year={2022}, pages={1257–1279} }","apa":"Mordhorst, L., &#38; Jenert, T. (2022). Curricular integration of academic and vocational education: a theory-based empirical typology of dual study programmes in Germany. <i>Higher Education</i>, <i>85</i>(6), 1257–1279. <a href=\"https://doi.org/10.1007/s10734-022-00889-7\">https://doi.org/10.1007/s10734-022-00889-7</a>"},"publication_identifier":{"issn":["0018-1560","1573-174X"]},"publication_status":"published","doi":"10.1007/s10734-022-00889-7","main_file_link":[{"url":"https://doi.org/10.1007/s10734-022-00889-7"}],"volume":85,"author":[{"last_name":"Mordhorst","id":"81839","full_name":"Mordhorst, Lisa","first_name":"Lisa"},{"first_name":"Tobias","id":"71994","full_name":"Jenert, Tobias","last_name":"Jenert","orcid":" https://orcid.org/0000-0001-9262-5646"}],"date_updated":"2025-12-08T10:44:17Z","abstract":[{"text":"In Germany, dual learning programmes are increasingly offered by higher education institutions. These programmes’ main characteristic and greatest challenge is their integration of academic and vocational learning. So far, this challenge has frequently been stated without specifying its exact nature and consequences for learners. The present study addresses this pedagogical research gap and examines the extent of variation in the degree of integration among dual study programmes. With reference to curriculum theory, the study develops an empirical typology of curricular integration in dual programmes. The data sample consists of 152 programmes at (dual) universities and universities of applied sciences. Data is analysed using hierarchical cluster analysis. Results indicate that the currently prevailing forms of curricular integration should best be differentiated according to five types. The five overlapping types of integration are located on a continuum ranging from parallelism through organisational linking to full curricular integration targeted immediately at students’ personal integration. The analysis confirms that there are problems with complying with integration standards set on the policy level. Above all, the study offers new insights on what marks the diverse integration landscape of dual study programmes. It proves that approaches to integration are more differentiated than previous research has shown.","lang":"eng"}],"publication":"Higher Education","language":[{"iso":"eng"}],"keyword":["Dual study programmes · Curricular integration · Curriculum theory · Empirical typology · Cluster analysis · Germany"],"year":"2022","issue":"6","quality_controlled":"1","title":"Curricular integration of academic and vocational education: a theory-based empirical typology of dual study programmes in Germany","date_created":"2023-10-05T09:25:30Z","publisher":"Springer Science and Business Media LLC"},{"title":"Modeling-based learning about chemical phenomena in primary education","date_updated":"2025-12-11T13:26:01Z","publisher":"CIEC, University of Minho","author":[{"first_name":"Julia","id":"54277","full_name":"Elsner, Julia","last_name":"Elsner"},{"last_name":"Tenberge","id":"67302","full_name":"Tenberge, Claudia","first_name":"Claudia"},{"id":"54823","full_name":"Fechner, Sabine","last_name":"Fechner","orcid":"0000-0001-5645-5870","first_name":"Sabine"}],"date_created":"2023-01-10T12:10:53Z","place":"Braga","year":"2022","page":"1241-1249","citation":{"ama":"Elsner J, Tenberge C, Fechner S. Modeling-based learning about chemical phenomena in primary education. In: Carvalho GS, Afonso AS, Anastácio Z, eds. <i>Fostering Scientific Citizenship in an Uncertain World (Proceedings of ESERA 2021)</i>. CIEC, University of Minho; 2022:1241-1249.","ieee":"J. Elsner, C. Tenberge, and S. Fechner, “Modeling-based learning about chemical phenomena in primary education,” in <i>Fostering scientific citizenship in an uncertain world (Proceedings of ESERA 2021)</i>, 2022, pp. 1241–1249.","chicago":"Elsner, Julia, Claudia Tenberge, and Sabine Fechner. “Modeling-Based Learning about Chemical Phenomena in Primary Education.” In <i>Fostering Scientific Citizenship in an Uncertain World (Proceedings of ESERA 2021)</i>, edited by Graça S. Carvalho, Ana Sofia Afonso, and Zélia Anastácio, 1241–49. Braga: CIEC, University of Minho, 2022.","short":"J. Elsner, C. Tenberge, S. Fechner, in: G.S. Carvalho, A.S. Afonso, Z. 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Conference of National Association for Research in Science Teaching (NARST), Vancouver."}},{"keyword":["augmented reality","modelle","digitale Medien"],"language":[{"iso":"ger"}],"_id":"33224","department":[{"_id":"386"},{"_id":"33"}],"user_id":"54823","editor":[{"first_name":"Sebastian","last_name":"Habig","full_name":"Habig, Sebastian"},{"first_name":"Helena","full_name":"van Vorst, Helena","last_name":"van Vorst"}],"status":"public","publication":"Unsicherheit als Element von naturwissenschaftsbezogenen Bildungsprozessen","type":"conference","title":"Einbettung von Augmented Reality in den Experimentierprozess","main_file_link":[{"open_access":"1","url":"https://www.gdcp-ev.de/wp-content/tb2022/TB2022_788_Peeters.pdf"}],"oa":"1","date_updated":"2025-12-11T13:37:30Z","volume":42,"date_created":"2022-08-29T14:12:09Z","author":[{"first_name":"Hendrik","last_name":"Peeters","orcid":"https://orcid.org/ 0000-0002-7143-3781","full_name":"Peeters, Hendrik","id":"49942"},{"first_name":"Sebastian","last_name":"Habig","full_name":"Habig, Sebastian"},{"first_name":"Sabine","id":"54823","full_name":"Fechner, Sabine","last_name":"Fechner","orcid":"0000-0001-5645-5870"}],"year":"2022","intvolume":"        42","page":"788-791","citation":{"apa":"Peeters, H., Habig, S., &#38; Fechner, S. (2022). Einbettung von Augmented Reality in den Experimentierprozess. In S. Habig &#38; H. van Vorst (Eds.), <i>Unsicherheit als Element von naturwissenschaftsbezogenen Bildungsprozessen</i> (Vol. 42, pp. 788–791).","mla":"Peeters, Hendrik, et al. “Einbettung von Augmented Reality in den Experimentierprozess.” <i>Unsicherheit als Element von naturwissenschaftsbezogenen Bildungsprozessen</i>, edited by Sebastian Habig and Helena van Vorst, vol. 42, 2022, pp. 788–91.","short":"H. Peeters, S. Habig, S. Fechner, in: S. 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Fechner, “Einbettung von Augmented Reality in den Experimentierprozess,” in <i>Unsicherheit als Element von naturwissenschaftsbezogenen Bildungsprozessen</i>, 2022, vol. 42, pp. 788–791.","chicago":"Peeters, Hendrik, Sebastian Habig, and Sabine Fechner. “Einbettung von Augmented Reality in den Experimentierprozess.” In <i>Unsicherheit als Element von naturwissenschaftsbezogenen Bildungsprozessen</i>, edited by Sebastian Habig and Helena van Vorst, 42:788–91, 2022.","ama":"Peeters H, Habig S, Fechner S. Einbettung von Augmented Reality in den Experimentierprozess. In: Habig S, van Vorst H, eds. <i>Unsicherheit als Element von naturwissenschaftsbezogenen Bildungsprozessen</i>. Vol 42. ; 2022:788-791."}},{"type":"conference_abstract","publication":"Jahrestagung der Gesellschaft für Didaktik der Chemie und Physik e.V.","status":"public","user_id":"54823","department":[{"_id":"386"},{"_id":"33"}],"_id":"62966","language":[{"iso":"eng"}],"keyword":["Epistemologie","Evidenzen","Daten","Umgang mit Daten"],"citation":{"ieee":"P. Pollmeier and S. Fechner, “Einfluss des Praxissemesters auf den Umgang mit Evidenzen im Unterricht,” presented at the Jahrestagung der Gesellschaft für Didaktik der Chemie und Physik e.V., Aachen, 2022.","chicago":"Pollmeier, Pascal, and Sabine Fechner. “Einfluss Des Praxissemesters Auf Den Umgang Mit Evidenzen Im Unterricht.” In <i>Jahrestagung Der Gesellschaft Für Didaktik Der Chemie Und Physik e.V.</i>, 2022.","ama":"Pollmeier P, Fechner S. Einfluss des Praxissemesters auf den Umgang mit Evidenzen im Unterricht. 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Stauffenburg.","mla":"Kunert, Irene Dorothea. <i>Argumentationsindikatoren im Deutschen und im Französischen</i>. Stauffenburg, 2022.","bibtex":"@book{Kunert_2022, place={Tübingen}, series={Stauffenburg Romanistik 4}, title={Argumentationsindikatoren im Deutschen und im Französischen}, publisher={Stauffenburg}, author={Kunert, Irene Dorothea}, year={2022}, collection={Stauffenburg Romanistik 4} }","short":"I.D. Kunert, Argumentationsindikatoren im Deutschen und im Französischen, Stauffenburg, Tübingen, 2022.","ama":"Kunert ID. <i>Argumentationsindikatoren im Deutschen und im Französischen</i>. Stauffenburg; 2022.","ieee":"I. D. Kunert, <i>Argumentationsindikatoren im Deutschen und im Französischen</i>. Tübingen: Stauffenburg, 2022.","chicago":"Kunert, Irene Dorothea. <i>Argumentationsindikatoren im Deutschen und im Französischen</i>. Stauffenburg Romanistik 4. Tübingen: Stauffenburg, 2022."},"page":"402","date_updated":"2025-12-16T09:26:47Z","publisher":"Stauffenburg","oa":"1","author":[{"full_name":"Kunert, Irene Dorothea","id":"84452","last_name":"Kunert","first_name":"Irene Dorothea"}],"date_created":"2024-03-03T19:07:27Z","title":"Argumentationsindikatoren im Deutschen und im Französischen","type":"dissertation","abstract":[{"lang":"ger","text":"Wie sieht ein Argument aus und wie eine Konklusion? Diese Frage, die seit Jahrhunderten auf der Ebene der Logik, der Rhetorik und der Dialektik diskutiert wird, beschäftigt auch die moderne Sprachwissenschaft. Die sprachliche Ausgestaltung von Argumentation ist so vielfältig, wie es auch das Phänomen der Argumentation selbst ist. Eine neue Form der Kategorisierung und eine systematische Beschreibung der Vielfalt dieser Argumentationsindikatoren stehen im Zentrum der vorliegenden Studie. Die qualitative und quantitative Analyse ausgewählter Indikatoren des Deutschen und des Französischen gewährt neue Erkenntnisse im Bereich des Sprachvergleichs und der Übersetzungsforschung. Die Studie richtet sich an alle, die sich für die Themen Argumentation, Übersetzung und deutsch-romanischer Sprachvergleich interessieren."}],"file":[{"date_created":"2025-12-16T09:04:38Z","creator":"ikunert","date_updated":"2025-12-16T09:26:46Z","file_id":"63112","access_level":"open_access","file_name":"Kunert Dissertation Argumentationsindikatoren 2022.pdf","file_size":3302209,"content_type":"application/pdf","relation":"main_file"}],"status":"public","_id":"52237","series_title":"Stauffenburg Romanistik 4","user_id":"84452","ddc":["440"],"file_date_updated":"2025-12-16T09:26:46Z","language":[{"iso":"ger"}]}]
