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ACM, 2025. <a href=\"https://doi.org/10.1145/3728179.3728187\">https://doi.org/10.1145/3728179.3728187</a>.","mla":"Bröker, Mika, et al. “Evaluating the Strong Scaling Potential of AI Engines for Molecular Dynamics Simulations.” <i>Proceedings of the 15th International Symposium on Highly Efficient Accelerators and Reconfigurable Technologies</i>, ACM, 2025, doi:<a href=\"https://doi.org/10.1145/3728179.3728187\">10.1145/3728179.3728187</a>.","bibtex":"@inproceedings{Bröker_Menzel_Plessl_2025, title={Evaluating the Strong Scaling Potential of AI Engines for Molecular Dynamics Simulations}, DOI={<a href=\"https://doi.org/10.1145/3728179.3728187\">10.1145/3728179.3728187</a>}, booktitle={Proceedings of the 15th International Symposium on Highly Efficient Accelerators and Reconfigurable Technologies}, publisher={ACM}, author={Bröker, Mika and Menzel, Johannes and Plessl, Christian}, year={2025} }","ama":"Bröker M, Menzel J, Plessl C. Evaluating the Strong Scaling Potential of AI Engines for Molecular Dynamics Simulations. In: <i>Proceedings of the 15th International Symposium on Highly Efficient Accelerators and Reconfigurable Technologies</i>. ACM; 2025. doi:<a href=\"https://doi.org/10.1145/3728179.3728187\">10.1145/3728179.3728187</a>"}},{"place":"Paestum","project":[{"name":"TRR 285 - A: TRR 285 - Project Area A","_id":"131"},{"name":"TRR 285 – A01: TRR 285 - Subproject A01","_id":"135"},{"name":"TRR 285:  Methodenentwicklung zur mechanischen Fügbarkeit in wandlungsfähigen Prozessketten","_id":"130"}],"quality_controlled":"1","citation":{"short":"M.C. Schlichter, Ö. Harabati, J.-P. Ludwig, M. Böhnke, C.R. Bielak, M. Bobbert, G. Meschut, in: Materials Research Proceedings, Materials Research Forum LLC, Paestum, 2025.","chicago":"Schlichter, Malte Christian, Özcan Harabati, Jean-Patrick Ludwig, Max Böhnke, Christian Roman Bielak, Mathias Bobbert, and Gerson Meschut. “Experimental and Numerical Investigation of the Influence of Rolling-Induced Sheet Metal Deformation on SPR Joints.” In <i>Materials Research Proceedings</i>, Vol. 54. Paestum: Materials Research Forum LLC, 2025. <a href=\"https://doi.org/10.21741/9781644903599-148\">https://doi.org/10.21741/9781644903599-148</a>.","ieee":"M. C. Schlichter <i>et al.</i>, “Experimental and numerical investigation of the influence of rolling-induced sheet metal deformation on SPR joints,” in <i>Materials Research Proceedings</i>, 2025, vol. 54, doi: <a href=\"https://doi.org/10.21741/9781644903599-148\">10.21741/9781644903599-148</a>.","apa":"Schlichter, M. C., Harabati, Ö., Ludwig, J.-P., Böhnke, M., Bielak, C. R., Bobbert, M., &#38; Meschut, G. (2025). Experimental and numerical investigation of the influence of rolling-induced sheet metal deformation on SPR joints. <i>Materials Research Proceedings</i>, <i>54</i>. <a href=\"https://doi.org/10.21741/9781644903599-148\">https://doi.org/10.21741/9781644903599-148</a>","bibtex":"@inproceedings{Schlichter_Harabati_Ludwig_Böhnke_Bielak_Bobbert_Meschut_2025, place={Paestum}, title={Experimental and numerical investigation of the influence of rolling-induced sheet metal deformation on SPR joints}, volume={54}, DOI={<a href=\"https://doi.org/10.21741/9781644903599-148\">10.21741/9781644903599-148</a>}, booktitle={Materials Research Proceedings}, publisher={Materials Research Forum LLC}, author={Schlichter, Malte Christian and Harabati, Özcan and Ludwig, Jean-Patrick and Böhnke, Max and Bielak, Christian Roman and Bobbert, Mathias and Meschut, Gerson}, year={2025} }","ama":"Schlichter MC, Harabati Ö, Ludwig J-P, et al. Experimental and numerical investigation of the influence of rolling-induced sheet metal deformation on SPR joints. In: <i>Materials Research Proceedings</i>. Vol 54. Materials Research Forum LLC; 2025. doi:<a href=\"https://doi.org/10.21741/9781644903599-148\">10.21741/9781644903599-148</a>","mla":"Schlichter, Malte Christian, et al. “Experimental and Numerical Investigation of the Influence of Rolling-Induced Sheet Metal Deformation on SPR Joints.” <i>Materials Research Proceedings</i>, vol. 54, Materials Research Forum LLC, 2025, doi:<a href=\"https://doi.org/10.21741/9781644903599-148\">10.21741/9781644903599-148</a>."},"volume":54,"user_id":"61977","publisher":"Materials Research Forum LLC","_id":"59878","status":"public","department":[{"_id":"157"}],"type":"conference","date_created":"2025-05-13T06:54:20Z","abstract":[{"text":"<jats:p>Abstract. In the development of advanced lightweight automotive solutions, self-piercing riveting (SPR) offers the possibility of joining multi-material structures to fulfil a wide variety of requirements. With regard to the entire process chain, production-related pre-deformations of the parts to be joined can influence the geometric shape and load capacity of SPR joints. Various studies have investigated the influence of pre-stretched sheet materials, in the sense of pre-drawing processes, on the formation of SPR joints. The impact of pre-stretching sheet metals on the formation of their geometrical characteristics and the shear-tensile strength of SPR processes was observed [1]. Pre-rolled semi-finished products are also joined together in mixed material automotive structures, e.g. tailor rolled blanks. This work aims to investigate the influence of pre-rolled joining parts on the geometric formation and load-carrying capacity of SPR joints. For this purpose, sheets of metal are cold-formed using a rolling process to induce a defined strain-hardening state in the material and then joined in various combinations. As the degree of deformation increases, the rolling of samples can lead to minimal accumulation of damage in the sheet materials, which can influence the joint behaviour. The rolling process, as well as the subsequent joining process, are also investigated by FEM. The influence of pre-rolled semi-finished products on the strength of the SPR joints is investigated.</jats:p>","lang":"eng"}],"publication":"Materials Research Proceedings","doi":"10.21741/9781644903599-148","language":[{"iso":"eng"}],"intvolume":"        54","publication_status":"published","date_updated":"2026-05-13T13:50:44Z","publication_identifier":{"issn":["2474-395X"]},"author":[{"last_name":"Schlichter","first_name":"Malte Christian","full_name":"Schlichter, Malte Christian","id":"61977"},{"first_name":"Özcan","last_name":"Harabati","full_name":"Harabati, Özcan"},{"id":"76631","last_name":"Ludwig","first_name":"Jean-Patrick","full_name":"Ludwig, Jean-Patrick"},{"id":"45779","last_name":"Böhnke","first_name":"Max","full_name":"Böhnke, Max"},{"id":"34782","first_name":"Christian Roman","last_name":"Bielak","full_name":"Bielak, Christian Roman"},{"id":"7850","full_name":"Bobbert, Mathias","first_name":"Mathias","last_name":"Bobbert"},{"id":"32056","full_name":"Meschut, Gerson","first_name":"Gerson","last_name":"Meschut","orcid":"0000-0002-2763-1246"}],"year":"2025","title":"Experimental and numerical investigation of the influence of rolling-induced sheet metal deformation on SPR joints"},{"citation":{"mla":"Lienhart, Michelle, et al. “Resonant and Antiresonant Exciton-Phonon Coupling in Quantum Dot Molecules.” <i>Physical Review B</i>, vol. 112, no. 23, 235305, American Physical Society (APS), 2025, doi:<a href=\"https://doi.org/10.1103/xc25-1tph\">10.1103/xc25-1tph</a>.","bibtex":"@article{Lienhart_Gawarecki_Stöcker_Bopp_Cullip_Akhlaq_Thalacker_Schall_Rodt_Ludwig_et al._2025, title={Resonant and antiresonant exciton-phonon coupling in quantum dot molecules}, volume={112}, DOI={<a href=\"https://doi.org/10.1103/xc25-1tph\">10.1103/xc25-1tph</a>}, number={23235305}, journal={Physical Review B}, publisher={American Physical Society (APS)}, author={Lienhart, Michelle and Gawarecki, Krzysztof and Stöcker, Markus and Bopp, Frederik and Cullip, Charlotte and Akhlaq, Nadeem and Thalacker, Christopher and Schall, Johannes and Rodt, Sven and Ludwig, Arne and et al.}, year={2025} }","ama":"Lienhart M, Gawarecki K, Stöcker M, et al. Resonant and antiresonant exciton-phonon coupling in quantum dot molecules. <i>Physical Review B</i>. 2025;112(23). doi:<a href=\"https://doi.org/10.1103/xc25-1tph\">10.1103/xc25-1tph</a>","ieee":"M. Lienhart <i>et al.</i>, “Resonant and antiresonant exciton-phonon coupling in quantum dot molecules,” <i>Physical Review B</i>, vol. 112, no. 23, Art. no. 235305, 2025, doi: <a href=\"https://doi.org/10.1103/xc25-1tph\">10.1103/xc25-1tph</a>.","apa":"Lienhart, M., Gawarecki, K., Stöcker, M., Bopp, F., Cullip, C., Akhlaq, N., Thalacker, C., Schall, J., Rodt, S., Ludwig, A., Reuter, D., Reitzenstein, S., Müller, K., Machnikowski, P., &#38; Finley, J. J. (2025). Resonant and antiresonant exciton-phonon coupling in quantum dot molecules. <i>Physical Review B</i>, <i>112</i>(23), Article 235305. <a href=\"https://doi.org/10.1103/xc25-1tph\">https://doi.org/10.1103/xc25-1tph</a>","short":"M. Lienhart, K. Gawarecki, M. Stöcker, F. Bopp, C. Cullip, N. Akhlaq, C. Thalacker, J. Schall, S. Rodt, A. Ludwig, D. Reuter, S. Reitzenstein, K. Müller, P. Machnikowski, J.J. Finley, Physical Review B 112 (2025).","chicago":"Lienhart, Michelle, Krzysztof Gawarecki, Markus Stöcker, Frederik Bopp, Charlotte Cullip, Nadeem Akhlaq, Christopher Thalacker, et al. “Resonant and Antiresonant Exciton-Phonon Coupling in Quantum Dot Molecules.” <i>Physical Review B</i> 112, no. 23 (2025). <a href=\"https://doi.org/10.1103/xc25-1tph\">https://doi.org/10.1103/xc25-1tph</a>."},"status":"public","user_id":"42514","volume":112,"_id":"65611","publisher":"American Physical Society (APS)","abstract":[{"lang":"eng","text":"<jats:p>\r\n                    Spins confined in optically active quantum dot molecules (QDMs) can be used for the deterministic generation of photonic graph states with tailored entanglement structures. Their usefulness for the generation of such nonclassical states of light is determined by orbital and spin decoherence mechanisms, particularly phonon-mediated processes dominant at energy scales up to a few millielectronvolts. Here, we directly measure the spectral function of orbital phonon relaxation between the energy states of the neutral exciton in a QDM and benchmark our findings against microscopic\r\n                    <a:math xmlns:a=\"http://www.w3.org/1998/Math/MathML\">\r\n                      <a:mrow>\r\n                        <a:mi mathvariant=\"bold-italic\">k</a:mi>\r\n                        <a:mo>·</a:mo>\r\n                        <a:mi mathvariant=\"bold-italic\">p</a:mi>\r\n                        <a:mspace width=\"4pt\"/>\r\n                      </a:mrow>\r\n                    </a:math>\r\n                    theory. Our results reveal pronounced resonances and antiresonances in the phonon-relaxation rates, ranging from tens of\r\n                    <e:math xmlns:e=\"http://www.w3.org/1998/Math/MathML\">\r\n                      <e:mrow>\r\n                        <e:mi>µ</e:mi>\r\n                        <e:msup>\r\n                          <e:mrow>\r\n                            <e:mi mathvariant=\"normal\">s</e:mi>\r\n                          </e:mrow>\r\n                          <e:mrow>\r\n                            <e:mo>−</e:mo>\r\n                            <e:mn>1</e:mn>\r\n                          </e:mrow>\r\n                        </e:msup>\r\n                      </e:mrow>\r\n                    </e:math>\r\n                    up to tens of\r\n                    <g:math xmlns:g=\"http://www.w3.org/1998/Math/MathML\">\r\n                      <g:msup>\r\n                        <g:mrow>\r\n                          <g:mi>ns</g:mi>\r\n                        </g:mrow>\r\n                        <g:mrow>\r\n                          <g:mo>−</g:mo>\r\n                          <g:mn>1</g:mn>\r\n                        </g:mrow>\r\n                      </g:msup>\r\n                    </g:math>\r\n                    . Comparison with a kinetic model reveals the voltage (energy) dependent phonon coupling strength and fully explains the interplay between phonon-assisted relaxation and radiative recombination. The resonances and antiresonances enable further tunability of the exciton lifetime which can be leveraged to increase the lifetime of energetically unfavorable charge configurations needed for realizing efficient spin-photon interfaces and multidimensional cluster states.\r\n                  </jats:p>"}],"publication":"Physical Review B","issue":"23","type":"journal_article","department":[{"_id":"15"},{"_id":"230"}],"date_created":"2026-05-13T06:24:29Z","publication_status":"published","date_updated":"2026-05-15T06:13:00Z","intvolume":"       112","year":"2025","title":"Resonant and antiresonant exciton-phonon coupling in quantum dot molecules","author":[{"first_name":"Michelle","last_name":"Lienhart","full_name":"Lienhart, Michelle"},{"last_name":"Gawarecki","first_name":"Krzysztof","full_name":"Gawarecki, Krzysztof"},{"full_name":"Stöcker, Markus","first_name":"Markus","last_name":"Stöcker"},{"first_name":"Frederik","last_name":"Bopp","full_name":"Bopp, Frederik"},{"full_name":"Cullip, Charlotte","first_name":"Charlotte","last_name":"Cullip"},{"full_name":"Akhlaq, Nadeem","first_name":"Nadeem","last_name":"Akhlaq"},{"full_name":"Thalacker, Christopher","first_name":"Christopher","last_name":"Thalacker"},{"last_name":"Schall","first_name":"Johannes","full_name":"Schall, Johannes"},{"first_name":"Sven","last_name":"Rodt","full_name":"Rodt, Sven"},{"full_name":"Ludwig, Arne","last_name":"Ludwig","first_name":"Arne"},{"id":"37763","full_name":"Reuter, Dirk","last_name":"Reuter","first_name":"Dirk"},{"first_name":"Stephan","last_name":"Reitzenstein","full_name":"Reitzenstein, Stephan"},{"full_name":"Müller, Kai","last_name":"Müller","first_name":"Kai"},{"full_name":"Machnikowski, Paweł","first_name":"Paweł","last_name":"Machnikowski"},{"first_name":"Jonathan J.","last_name":"Finley","full_name":"Finley, Jonathan J."}],"publication_identifier":{"issn":["2469-9950","2469-9969"]},"doi":"10.1103/xc25-1tph","article_number":"235305","language":[{"iso":"eng"}]},{"type":"conference","department":[{"_id":"7"},{"_id":"623"}],"date_created":"2024-01-07T20:09:13Z","abstract":[{"lang":"eng","text":"Despite the fundamental role the Quantum Satisfiability (QSAT) problem has\r\nplayed in quantum complexity theory, a central question remains open: At which\r\nlocal dimension does the complexity of QSAT transition from \"easy\" to \"hard\"?\r\nHere, we study QSAT with each constraint acting on a $k$-dimensional and\r\n$l$-dimensional qudit pair, denoted $(k,l)$-QSAT. Our first main result shows\r\nthat, surprisingly, QSAT on qubits can remain $\\mathsf{QMA}_1$-hard, in that\r\n$(2,5)$-QSAT is $\\mathsf{QMA}_1$-complete. In contrast, $2$-SAT on qubits is\r\nwell-known to be poly-time solvable [Bravyi, 2006]. Our second main result\r\nproves that $(3,d)$-QSAT on the 1D line with $d\\in O(1)$ is also\r\n$\\mathsf{QMA}_1$-hard. Finally, we initiate the study of 1D $(2,d)$-QSAT by\r\ngiving a frustration-free 1D Hamiltonian with a unique, entangled ground state.\r\n  Our first result uses a direct embedding, combining a novel clock\r\nconstruction with the 2D circuit-to-Hamiltonian construction of [Gosset, Nagaj,\r\n2013]. Of note is a new simplified and analytic proof for the latter (as\r\nopposed to a partially numeric proof in [GN13]). This exploits Unitary Labelled\r\nGraphs [Bausch, Cubitt, Ozols, 2017] together with a new \"Nullspace Connection\r\nLemma\", allowing us to break low energy analyses into small patches of\r\nprojectors, and to improve the soundness analysis of [GN13] from\r\n$\\Omega(1/T^6)$ to $\\Omega(1/T^2)$, for $T$ the number of gates. Our second\r\nresult goes via black-box reduction: Given an arbitrary 1D Hamiltonian $H$ on\r\n$d'$-dimensional qudits, we show how to embed it into an effective null-space\r\nof a 1D $(3,d)$-QSAT instance, for $d\\in O(1)$. Our approach may be viewed as a\r\nweaker notion of \"simulation\" (\\`a la [Bravyi, Hastings 2017], [Cubitt,\r\nMontanaro, Piddock 2018]). As far as we are aware, this gives the first\r\n\"black-box simulation\"-based $\\mathsf{QMA}_1$-hardness result, i.e. for\r\nfrustration-free Hamiltonians."}],"publication":"16th Innovations in Theoretical Computer Science (ITCS)","issue":"85","doi":"10.4230/LIPIcs.ITCS.2025.85","language":[{"iso":"eng"}],"date_updated":"2026-05-15T08:38:31Z","publication_status":"published","intvolume":"       325","title":"Quantum 2-SAT on low dimensional systems is $\\mathsf{QMA}_1$-complete:  Direct embeddings and black-box simulation","year":"2025","author":[{"id":"57863","full_name":"Rudolph, Dorian","last_name":"Rudolph","first_name":"Dorian"},{"id":"71541","full_name":"Gharibian, Sevag","orcid":"0000-0002-9992-3379","last_name":"Gharibian","first_name":"Sevag"},{"full_name":"Nagaj, Daniel","last_name":"Nagaj","first_name":"Daniel"}],"external_id":{"arxiv":["2401.02368"]},"citation":{"mla":"Rudolph, Dorian, et al. “Quantum 2-SAT on Low Dimensional Systems Is $\\mathsf{QMA}_1$-Complete:  Direct Embeddings and Black-Box Simulation.” <i>16th Innovations in Theoretical Computer Science (ITCS)</i>, vol. 325, no. 85, 2025, pp. 1–24, doi:<a href=\"https://doi.org/10.4230/LIPIcs.ITCS.2025.85\">10.4230/LIPIcs.ITCS.2025.85</a>.","bibtex":"@inproceedings{Rudolph_Gharibian_Nagaj_2025, title={Quantum 2-SAT on low dimensional systems is $\\mathsf{QMA}_1$-complete:  Direct embeddings and black-box simulation}, volume={325}, DOI={<a href=\"https://doi.org/10.4230/LIPIcs.ITCS.2025.85\">10.4230/LIPIcs.ITCS.2025.85</a>}, number={85}, booktitle={16th Innovations in Theoretical Computer Science (ITCS)}, author={Rudolph, Dorian and Gharibian, Sevag and Nagaj, Daniel}, year={2025}, pages={1–24} }","ama":"Rudolph D, Gharibian S, Nagaj D. Quantum 2-SAT on low dimensional systems is $\\mathsf{QMA}_1$-complete:  Direct embeddings and black-box simulation. In: <i>16th Innovations in Theoretical Computer Science (ITCS)</i>. Vol 325. ; 2025:1-24. doi:<a href=\"https://doi.org/10.4230/LIPIcs.ITCS.2025.85\">10.4230/LIPIcs.ITCS.2025.85</a>","ieee":"D. Rudolph, S. Gharibian, and D. Nagaj, “Quantum 2-SAT on low dimensional systems is $\\mathsf{QMA}_1$-complete:  Direct embeddings and black-box simulation,” in <i>16th Innovations in Theoretical Computer Science (ITCS)</i>, 2025, vol. 325, no. 85, pp. 1–24, doi: <a href=\"https://doi.org/10.4230/LIPIcs.ITCS.2025.85\">10.4230/LIPIcs.ITCS.2025.85</a>.","apa":"Rudolph, D., Gharibian, S., &#38; Nagaj, D. (2025). Quantum 2-SAT on low dimensional systems is $\\mathsf{QMA}_1$-complete:  Direct embeddings and black-box simulation. <i>16th Innovations in Theoretical Computer Science (ITCS)</i>, <i>325</i>(85), 1–24. <a href=\"https://doi.org/10.4230/LIPIcs.ITCS.2025.85\">https://doi.org/10.4230/LIPIcs.ITCS.2025.85</a>","chicago":"Rudolph, Dorian, Sevag Gharibian, and Daniel Nagaj. “Quantum 2-SAT on Low Dimensional Systems Is $\\mathsf{QMA}_1$-Complete:  Direct Embeddings and Black-Box Simulation.” In <i>16th Innovations in Theoretical Computer Science (ITCS)</i>, 325:1–24, 2025. <a href=\"https://doi.org/10.4230/LIPIcs.ITCS.2025.85\">https://doi.org/10.4230/LIPIcs.ITCS.2025.85</a>.","short":"D. Rudolph, S. Gharibian, D. Nagaj, in: 16th Innovations in Theoretical Computer Science (ITCS), 2025, pp. 1–24."},"user_id":"71541","volume":325,"page":"1-24","_id":"50272","status":"public"},{"citation":{"ieee":"E. Grimminger-Seidensticker, A. Treder, and C. Niederhaus, “Sprachbezogene Kompetenzerwartungen im Sportunterricht – Eine systematische Lehrplananalyse,” <i>Zeitschrift für Sportpädagogische Forschung</i>, vol. 13, no. 2, pp. 189–212, 2025, doi: <a href=\"https://doi.org/10.5771/2196-5218-2025-2-189\">https://doi.org/10.5771/2196-5218-2025-2-189</a>.","apa":"Grimminger-Seidensticker, E., Treder, A., &#38; Niederhaus, C. (2025). Sprachbezogene Kompetenzerwartungen im Sportunterricht – Eine systematische Lehrplananalyse. <i>Zeitschrift für Sportpädagogische Forschung</i>, <i>13</i>(2), 189–212. <a href=\"https://doi.org/10.5771/2196-5218-2025-2-189\">https://doi.org/10.5771/2196-5218-2025-2-189</a>","short":"E. Grimminger-Seidensticker, A. Treder, C. Niederhaus, Zeitschrift für Sportpädagogische Forschung 13 (2025) 189–212.","chicago":"Grimminger-Seidensticker, Elke, Alexandra Treder, and Constanze Niederhaus. “Sprachbezogene Kompetenzerwartungen im Sportunterricht – Eine systematische Lehrplananalyse.” <i>Zeitschrift für Sportpädagogische Forschung</i> 13, no. 2 (2025): 189–212. <a href=\"https://doi.org/10.5771/2196-5218-2025-2-189\">https://doi.org/10.5771/2196-5218-2025-2-189</a>.","mla":"Grimminger-Seidensticker, Elke, et al. “Sprachbezogene Kompetenzerwartungen im Sportunterricht – Eine systematische Lehrplananalyse.” <i>Zeitschrift für Sportpädagogische Forschung</i>, vol. 13, no. 2, Nomos, 2025, pp. 189–212, doi:<a href=\"https://doi.org/10.5771/2196-5218-2025-2-189\">https://doi.org/10.5771/2196-5218-2025-2-189</a>.","bibtex":"@article{Grimminger-Seidensticker_Treder_Niederhaus_2025, title={Sprachbezogene Kompetenzerwartungen im Sportunterricht – Eine systematische Lehrplananalyse}, volume={13}, DOI={<a href=\"https://doi.org/10.5771/2196-5218-2025-2-189\">https://doi.org/10.5771/2196-5218-2025-2-189</a>}, number={2}, journal={Zeitschrift für Sportpädagogische Forschung}, publisher={Nomos}, author={Grimminger-Seidensticker, Elke and Treder, Alexandra and Niederhaus, Constanze}, year={2025}, pages={189–212} }","ama":"Grimminger-Seidensticker E, Treder A, Niederhaus C. Sprachbezogene Kompetenzerwartungen im Sportunterricht – Eine systematische Lehrplananalyse. <i>Zeitschrift für Sportpädagogische Forschung</i>. 2025;13(2):189-212. doi:<a href=\"https://doi.org/10.5771/2196-5218-2025-2-189\">https://doi.org/10.5771/2196-5218-2025-2-189</a>"},"publication":"Zeitschrift für Sportpädagogische Forschung","issue":"2","date_created":"2026-01-07T11:00:21Z","department":[{"_id":"17"},{"_id":"174"},{"_id":"320"}],"type":"journal_article","author":[{"first_name":"Elke","last_name":"Grimminger-Seidensticker","full_name":"Grimminger-Seidensticker, Elke","id":"85816"},{"first_name":"Alexandra","orcid":"0009-0003-9045-5964","last_name":"Treder","full_name":"Treder, Alexandra","id":"95412"},{"id":"54999","last_name":"Niederhaus","first_name":"Constanze","full_name":"Niederhaus, Constanze"}],"status":"public","year":"2025","title":"Sprachbezogene Kompetenzerwartungen im Sportunterricht – Eine systematische Lehrplananalyse","intvolume":"        13","publication_status":"published","date_updated":"2026-05-15T07:03:02Z","_id":"63513","language":[{"iso":"ger"}],"publisher":"Nomos","page":"189-212","volume":13,"user_id":"54999","doi":"https://doi.org/10.5771/2196-5218-2025-2-189"},{"publication_status":"published","date_updated":"2026-05-15T08:40:45Z","intvolume":"       135","title":"Beating Grover search for low-energy estimation and state preparation","status":"public","year":"2025","author":[{"first_name":"Harry","last_name":"Buhrman","full_name":"Buhrman, Harry"},{"id":"71541","last_name":"Gharibian","orcid":"0000-0002-9992-3379","first_name":"Sevag","full_name":"Gharibian, Sevag"},{"last_name":"Landau","first_name":"Zeph","full_name":"Landau, Zeph"},{"last_name":"Gall","first_name":"François Le","full_name":"Gall, François Le"},{"last_name":"Schuch","first_name":"Norbert","full_name":"Schuch, Norbert"},{"first_name":"Suguru","last_name":"Tamaki","full_name":"Tamaki, Suguru"}],"user_id":"71541","doi":"10.1103/29qw-bssx","volume":135,"page":"030601","language":[{"iso":"eng"}],"_id":"55037","abstract":[{"lang":"eng","text":"Estimating ground state energies of many-body Hamiltonians is a central task\r\nin many areas of quantum physics. In this work, we give quantum algorithms\r\nwhich, given any $k$-body Hamiltonian $H$, compute an estimate for the ground\r\nstate energy and prepare a quantum state achieving said energy, respectively.\r\nSpecifically, for any $\\varepsilon>0$, our algorithms return, with high\r\nprobability, an estimate of the ground state energy of $H$ within additive\r\nerror $\\varepsilon M$, or a quantum state with the corresponding energy. Here,\r\n$M$ is the total strength of all interaction terms, which in general is\r\nextensive in the system size. Our approach makes no assumptions about the\r\ngeometry or spatial locality of interaction terms of the input Hamiltonian and\r\nthus handles even long-range or all-to-all interactions, such as in quantum\r\nchemistry, where lattice-based techniques break down. In this fully general\r\nsetting, the runtime of our algorithms scales as $2^{cn/2}$ for $c<1$, yielding\r\nthe first quantum algorithms for low-energy estimation breaking the natural\r\nbound based on Grover search. The core of our approach is remarkably simple,\r\nand relies on showing that any $k$-body Hamiltonian has a low-energy subspace\r\nof exponential dimension."}],"publication":"Physical Review Letters","citation":{"mla":"Buhrman, Harry, et al. “Beating Grover Search for Low-Energy Estimation and State Preparation.” <i>Physical Review Letters</i>, vol. 135, 2025, p. 030601, doi:<a href=\"https://doi.org/10.1103/29qw-bssx\">10.1103/29qw-bssx</a>.","bibtex":"@article{Buhrman_Gharibian_Landau_Gall_Schuch_Tamaki_2025, title={Beating Grover search for low-energy estimation and state preparation}, volume={135}, DOI={<a href=\"https://doi.org/10.1103/29qw-bssx\">10.1103/29qw-bssx</a>}, journal={Physical Review Letters}, author={Buhrman, Harry and Gharibian, Sevag and Landau, Zeph and Gall, François Le and Schuch, Norbert and Tamaki, Suguru}, year={2025}, pages={030601} }","ama":"Buhrman H, Gharibian S, Landau Z, Gall FL, Schuch N, Tamaki S. Beating Grover search for low-energy estimation and state preparation. <i>Physical Review Letters</i>. 2025;135:030601. doi:<a href=\"https://doi.org/10.1103/29qw-bssx\">10.1103/29qw-bssx</a>","ieee":"H. Buhrman, S. Gharibian, Z. Landau, F. L. Gall, N. Schuch, and S. Tamaki, “Beating Grover search for low-energy estimation and state preparation,” <i>Physical Review Letters</i>, vol. 135, p. 030601, 2025, doi: <a href=\"https://doi.org/10.1103/29qw-bssx\">10.1103/29qw-bssx</a>.","apa":"Buhrman, H., Gharibian, S., Landau, Z., Gall, F. L., Schuch, N., &#38; Tamaki, S. (2025). Beating Grover search for low-energy estimation and state preparation. <i>Physical Review Letters</i>, <i>135</i>, 030601. <a href=\"https://doi.org/10.1103/29qw-bssx\">https://doi.org/10.1103/29qw-bssx</a>","chicago":"Buhrman, Harry, Sevag Gharibian, Zeph Landau, François Le Gall, Norbert Schuch, and Suguru Tamaki. “Beating Grover Search for Low-Energy Estimation and State Preparation.” <i>Physical Review Letters</i> 135 (2025): 030601. <a href=\"https://doi.org/10.1103/29qw-bssx\">https://doi.org/10.1103/29qw-bssx</a>.","short":"H. Buhrman, S. Gharibian, Z. Landau, F.L. Gall, N. Schuch, S. Tamaki, Physical Review Letters 135 (2025) 030601."},"type":"journal_article","department":[{"_id":"7"},{"_id":"623"}],"external_id":{"arxiv":["2407.03073"]},"date_created":"2024-07-04T09:02:42Z"},{"language":[{"iso":"eng"}],"_id":"61776","user_id":"71541","status":"public","title":"Energy, Bosons and Computational Complexity","year":"2025","author":[{"last_name":"Chabaud","first_name":"Ulysse","full_name":"Chabaud, Ulysse"},{"full_name":"Gharibian, Sevag","last_name":"Gharibian","orcid":"0000-0002-9992-3379","first_name":"Sevag","id":"71541"},{"full_name":"Mehraban, Saeed","first_name":"Saeed","last_name":"Mehraban"},{"full_name":"Motamedi, Arsalan","last_name":"Motamedi","first_name":"Arsalan"},{"full_name":"Naeij, Hamid Reza","last_name":"Naeij","first_name":"Hamid Reza"},{"id":"57863","first_name":"Dorian","last_name":"Rudolph","full_name":"Rudolph, Dorian"},{"first_name":"Dhruva","last_name":"Sambrani","full_name":"Sambrani, Dhruva"}],"date_updated":"2026-05-15T08:39:50Z","external_id":{"arxiv":["2510.08545"]},"date_created":"2025-10-10T13:44:52Z","type":"preprint","department":[{"_id":"7"},{"_id":"623"}],"publication":"arXiv:2510.08545","citation":{"short":"U. Chabaud, S. Gharibian, S. Mehraban, A. Motamedi, H.R. Naeij, D. Rudolph, D. Sambrani, ArXiv:2510.08545 (2025).","chicago":"Chabaud, Ulysse, Sevag Gharibian, Saeed Mehraban, Arsalan Motamedi, Hamid Reza Naeij, Dorian Rudolph, and Dhruva Sambrani. “Energy, Bosons and Computational Complexity.” <i>ArXiv:2510.08545</i>, 2025.","ieee":"U. Chabaud <i>et al.</i>, “Energy, Bosons and Computational Complexity,” <i>arXiv:2510.08545</i>. 2025.","apa":"Chabaud, U., Gharibian, S., Mehraban, S., Motamedi, A., Naeij, H. R., Rudolph, D., &#38; Sambrani, D. (2025). Energy, Bosons and Computational Complexity. In <i>arXiv:2510.08545</i>.","bibtex":"@article{Chabaud_Gharibian_Mehraban_Motamedi_Naeij_Rudolph_Sambrani_2025, title={Energy, Bosons and Computational Complexity}, journal={arXiv:2510.08545}, author={Chabaud, Ulysse and Gharibian, Sevag and Mehraban, Saeed and Motamedi, Arsalan and Naeij, Hamid Reza and Rudolph, Dorian and Sambrani, Dhruva}, year={2025} }","ama":"Chabaud U, Gharibian S, Mehraban S, et al. Energy, Bosons and Computational Complexity. <i>arXiv:251008545</i>. Published online 2025.","mla":"Chabaud, Ulysse, et al. “Energy, Bosons and Computational Complexity.” <i>ArXiv:2510.08545</i>, 2025."},"abstract":[{"lang":"eng","text":"We investigate the role of energy, i.e. average photon number, as a resource\r\nin the computational complexity of bosonic systems. We show three sets of\r\nresults: (1. Energy growth rates) There exist bosonic gate sets which increase\r\nenergy incredibly rapidly, obtaining e.g. infinite energy in finite/constant\r\ntime. We prove these high energies can make computing properties of bosonic\r\ncomputations, such as deciding whether a given computation will attain infinite\r\nenergy, extremely difficult, formally undecidable. (2. Lower bounds on\r\ncomputational power) More energy ``='' more computational power. For example,\r\ncertain gate sets allow poly-time bosonic computations to simulate PTOWER, the\r\nset of deterministic computations whose runtime scales as a tower of\r\nexponentials with polynomial height. Even just exponential energy and $O(1)$\r\nmodes suffice to simulate NP, which, importantly, is a setup similar to that of\r\nthe recent bosonic factoring algorithm of [Brenner, Caha, Coiteux-Roy and\r\nKoenig (2024)]. For simpler gate sets, we show an energy hierarchy theorem. (3.\r\nUpper bounds on computational power) Bosonic computations with polynomial\r\nenergy can be simulated in BQP, ``physical'' bosonic computations with\r\narbitrary finite energy are decidable, and the gate set consisting of Gaussian\r\ngates and the cubic phase gate can be simulated in PP, with exponential bound\r\non energy, improving upon the previous PSPACE upper bound. Finally, combining\r\nupper and lower bounds yields no-go theorems for a continuous-variable\r\nSolovay--Kitaev theorem for gate sets such as the Gaussian and cubic phase\r\ngates."}]},{"citation":{"bibtex":"@article{Kremer_Rudolph_Gharibian_2025, title={Quantum k-SAT Related Hypergraph Problems}, journal={arXiv:2506.17066}, author={Kremer, Simon-Luca and Rudolph, Dorian and Gharibian, Sevag}, year={2025} }","ama":"Kremer S-L, Rudolph D, Gharibian S. Quantum k-SAT Related Hypergraph Problems. <i>arXiv:250617066</i>. Published online 2025.","mla":"Kremer, Simon-Luca, et al. “Quantum K-SAT Related Hypergraph Problems.” <i>ArXiv:2506.17066</i>, 2025.","short":"S.-L. Kremer, D. Rudolph, S. Gharibian, ArXiv:2506.17066 (2025).","chicago":"Kremer, Simon-Luca, Dorian Rudolph, and Sevag Gharibian. “Quantum K-SAT Related Hypergraph Problems.” <i>ArXiv:2506.17066</i>, 2025.","ieee":"S.-L. Kremer, D. Rudolph, and S. Gharibian, “Quantum k-SAT Related Hypergraph Problems,” <i>arXiv:2506.17066</i>. 2025.","apa":"Kremer, S.-L., Rudolph, D., &#38; Gharibian, S. (2025). Quantum k-SAT Related Hypergraph Problems. In <i>arXiv:2506.17066</i>."},"publication":"arXiv:2506.17066","abstract":[{"lang":"eng","text":"The Quantum k-SAT problem is the quantum generalization of the k-SAT problem.\r\nIt is the problem whether a given local Hamiltonian is frustration-free.\r\nFrustration-free means that the ground state of the k-local Hamiltonian\r\nminimizes the energy of every local interaction term simultaneously. This is a\r\ncentral question in quantum physics and a canonical QMA_1-complete problem. The\r\nQuantum k-SAT problem is not as well studied as the classical k-SAT problem in\r\nterms of special tractable cases, approximation algorithms and parameterized\r\ncomplexity. In this paper, we will give a graph-theoretic study of the Quantum\r\nk-SAT problem with the structures core and radius. These hypergraph structures\r\nare important to solve the Quantum k-SAT problem. We can solve a Quantum k-SAT\r\ninstance in polynomial time if the derived hypergraph has a core of size n-m+a,\r\nwhere a is a constant, and the radius is at most logarithmic. If it exists, we\r\ncan find a core of size n-m+a with the best possible radius in polynomial time,\r\nwhereas finding a general minimum core with minimal radius is NP-hard."}],"date_created":"2025-06-27T06:56:35Z","external_id":{"arxiv":["2506.17066"]},"department":[{"_id":"7"},{"_id":"623"}],"type":"preprint","author":[{"full_name":"Kremer, Simon-Luca","first_name":"Simon-Luca","last_name":"Kremer"},{"last_name":"Rudolph","first_name":"Dorian","full_name":"Rudolph, Dorian","id":"57863"},{"id":"71541","orcid":"0000-0002-9992-3379","last_name":"Gharibian","first_name":"Sevag","full_name":"Gharibian, Sevag"}],"status":"public","year":"2025","title":"Quantum k-SAT Related Hypergraph Problems","date_updated":"2026-05-15T08:41:01Z","_id":"60432","language":[{"iso":"eng"}],"user_id":"71541"},{"doi":"10.51202/9783181024461-347","user_id":"11829","editor":[{"first_name":"VDI","last_name":"Wissensforum GmbH","full_name":"Wissensforum GmbH, VDI"}],"page":"347–360","language":[{"iso":"eng"}],"_id":"63439","publisher":"{VDI Verlag}","series_title":"VDI-Berichte","date_updated":"2026-05-18T13:12:50Z","year":"2025","status":"public","title":"Ultrasound based measurement of mechanical properties of continuous fiber reinforced thermoplastic laminates – A non-destructive method to identify changes in fiber matrix adhesion","author":[{"id":"20531","full_name":"Moritzer, Elmar","first_name":"Elmar","last_name":"Moritzer"},{"orcid":"0009-0005-9707-0885","last_name":"Brandes","first_name":"Philipp","full_name":"Brandes, Philipp","id":"70091"},{"full_name":"Claes, Leander","first_name":"Leander","last_name":"Claes","orcid":"0000-0002-4393-268X","id":"11829"},{"id":"213","last_name":"Henning","first_name":"Bernd","full_name":"Henning, Bernd"}],"type":"book_chapter","place":"Düsseldorf","date_created":"2026-01-05T08:42:55Z","project":[{"name":"FaMOUS: Ein ultraschallbasiertes Messverfahren unter Berücksichtigung viskoelastischer Eigenschaften zur Charakterisierung der Faser-Matrix-Haftung bei Organoblechen sowie deren realitätsnahe Modellierung","_id":"157","grant_number":"495847374"}],"publication":"PIAE EUROPE 2025","citation":{"bibtex":"@inbook{Moritzer_Brandes_Claes_Henning_2025, place={Düsseldorf}, series={VDI-Berichte}, title={Ultrasound based measurement of mechanical properties of continuous fiber reinforced thermoplastic laminates – A non-destructive method to identify changes in fiber matrix adhesion}, DOI={<a href=\"https://doi.org/10.51202/9783181024461-347\">10.51202/9783181024461-347</a>}, booktitle={PIAE EUROPE 2025}, publisher={{VDI Verlag}}, author={Moritzer, Elmar and Brandes, Philipp and Claes, Leander and Henning, Bernd}, editor={Wissensforum GmbH, VDI}, year={2025}, pages={347–360}, collection={VDI-Berichte} }","ama":"Moritzer E, Brandes P, Claes L, Henning B. Ultrasound based measurement of mechanical properties of continuous fiber reinforced thermoplastic laminates – A non-destructive method to identify changes in fiber matrix adhesion. In: Wissensforum GmbH V, ed. <i>PIAE EUROPE 2025</i>. VDI-Berichte. {VDI Verlag}; 2025:347–360. doi:<a href=\"https://doi.org/10.51202/9783181024461-347\">10.51202/9783181024461-347</a>","mla":"Moritzer, Elmar, et al. “Ultrasound Based Measurement of Mechanical Properties of Continuous Fiber Reinforced Thermoplastic Laminates – A Non-Destructive Method to Identify Changes in Fiber Matrix Adhesion.” <i>PIAE EUROPE 2025</i>, edited by VDI Wissensforum GmbH, {VDI Verlag}, 2025, pp. 347–360, doi:<a href=\"https://doi.org/10.51202/9783181024461-347\">10.51202/9783181024461-347</a>.","short":"E. Moritzer, P. Brandes, L. Claes, B. Henning, in: V. Wissensforum GmbH (Ed.), PIAE EUROPE 2025, {VDI Verlag}, Düsseldorf, 2025, pp. 347–360.","chicago":"Moritzer, Elmar, Philipp Brandes, Leander Claes, and Bernd Henning. “Ultrasound Based Measurement of Mechanical Properties of Continuous Fiber Reinforced Thermoplastic Laminates – A Non-Destructive Method to Identify Changes in Fiber Matrix Adhesion.” In <i>PIAE EUROPE 2025</i>, edited by VDI Wissensforum GmbH, 347–360. VDI-Berichte. Düsseldorf: {VDI Verlag}, 2025. <a href=\"https://doi.org/10.51202/9783181024461-347\">https://doi.org/10.51202/9783181024461-347</a>.","ieee":"E. Moritzer, P. Brandes, L. Claes, and B. Henning, “Ultrasound based measurement of mechanical properties of continuous fiber reinforced thermoplastic laminates – A non-destructive method to identify changes in fiber matrix adhesion,” in <i>PIAE EUROPE 2025</i>, V. Wissensforum GmbH, Ed. Düsseldorf: {VDI Verlag}, 2025, pp. 347–360.","apa":"Moritzer, E., Brandes, P., Claes, L., &#38; Henning, B. (2025). Ultrasound based measurement of mechanical properties of continuous fiber reinforced thermoplastic laminates – A non-destructive method to identify changes in fiber matrix adhesion. In V. Wissensforum GmbH (Ed.), <i>PIAE EUROPE 2025</i> (pp. 347–360). {VDI Verlag}. <a href=\"https://doi.org/10.51202/9783181024461-347\">https://doi.org/10.51202/9783181024461-347</a>"}},{"date_created":"2026-01-05T08:42:55Z","keyword":["Faser-Kunststoff-Verbunde (FKV)","Faserverstärkte Kunststoffe (FVK)","Organobleche","Ultraschall"],"type":"journal_article","department":[{"_id":"9"},{"_id":"321"},{"_id":"367"},{"_id":"49"}],"publication":"WAK Jahresmagazin","citation":{"apa":"Moritzer, E., Brandes, P., Westphal, M. S., Claes, L., Wippermann, M., Düchting, J., &#38; Henning, B. (2025). Zerstörungsfreie Ultraschall-Prüfung von Organoblechen. <i>WAK Jahresmagazin</i>, <i>2025</i>, 26–29.","ieee":"E. Moritzer <i>et al.</i>, “Zerstörungsfreie Ultraschall-Prüfung von Organoblechen,” <i>WAK Jahresmagazin</i>, vol. 2025, pp. 26–29, 2025.","chicago":"Moritzer, Elmar, Philipp Brandes, Max Siegfried Westphal, Leander Claes, Mareen Wippermann, Julia Düchting, and Bernd Henning. “Zerstörungsfreie Ultraschall-Prüfung von Organoblechen.” <i>WAK Jahresmagazin</i> 2025 (2025): 26–29.","short":"E. Moritzer, P. Brandes, M.S. Westphal, L. Claes, M. Wippermann, J. Düchting, B. Henning, WAK Jahresmagazin 2025 (2025) 26–29.","mla":"Moritzer, Elmar, et al. “Zerstörungsfreie Ultraschall-Prüfung von Organoblechen.” <i>WAK Jahresmagazin</i>, vol. 2025, 2025, pp. 26–29.","ama":"Moritzer E, Brandes P, Westphal MS, et al. Zerstörungsfreie Ultraschall-Prüfung von Organoblechen. <i>WAK Jahresmagazin</i>. 2025;2025:26–29.","bibtex":"@article{Moritzer_Brandes_Westphal_Claes_Wippermann_Düchting_Henning_2025, title={Zerstörungsfreie Ultraschall-Prüfung von Organoblechen}, volume={2025}, journal={WAK Jahresmagazin}, author={Moritzer, Elmar and Brandes, Philipp and Westphal, Max Siegfried and Claes, Leander and Wippermann, Mareen and Düchting, Julia and Henning, Bernd}, year={2025}, pages={26–29} }"},"project":[{"grant_number":"495847374","_id":"157","name":"FaMOUS: Ein ultraschallbasiertes Messverfahren unter Berücksichtigung viskoelastischer Eigenschaften zur Charakterisierung der Faser-Matrix-Haftung bei Organoblechen sowie deren realitätsnahe Modellierung"}],"page":"26–29","language":[{"iso":"ger"}],"_id":"63440","user_id":"11829","volume":2025,"year":"2025","status":"public","title":"Zerstörungsfreie Ultraschall-Prüfung von Organoblechen","author":[{"full_name":"Moritzer, Elmar","first_name":"Elmar","last_name":"Moritzer","id":"20531"},{"id":"70091","full_name":"Brandes, Philipp","last_name":"Brandes","orcid":"0009-0005-9707-0885","first_name":"Philipp"},{"first_name":"Max Siegfried","last_name":"Westphal","full_name":"Westphal, Max Siegfried"},{"full_name":"Claes, Leander","first_name":"Leander","orcid":"0000-0002-4393-268X","last_name":"Claes","id":"11829"},{"id":"74624","first_name":"Mareen","last_name":"Wippermann","full_name":"Wippermann, Mareen"},{"full_name":"Düchting, Julia","first_name":"Julia","last_name":"Düchting"},{"id":"213","full_name":"Henning, Bernd","first_name":"Bernd","last_name":"Henning"}],"date_updated":"2026-05-18T13:20:58Z","intvolume":"      2025"},{"date_created":"2026-03-16T12:59:12Z","type":"book_chapter","publication":"Sprache(n) im Beruf: Gestaltung und Förderung beruflicher Sprachbildung an den verschiedenen Lernorten.","citation":{"bibtex":"@inbook{Meyer_Dehn_Gövert_Schlegel-Matthies_Niederhaus_2025, title={Professionalisierung (angehender) Lehrkräfte für sprachbildenden Fachunterricht im Berufsfeld Ernährung und Hauswirtschaft mittels OER-Lektionen.}, booktitle={Sprache(n) im Beruf: Gestaltung und Förderung beruflicher Sprachbildung an den verschiedenen Lernorten.}, author={Meyer, Anja and Dehn, Freya and Gövert, Andre and Schlegel-Matthies, Kirsten and Niederhaus, Constanze}, editor={Gerholz, Karl-Heinz and Hochleitner, Thomas and Maidanjuk, Ilona  and Beil, Shaleen Beil}, year={2025}, pages={169–186} }","ama":"Meyer A, Dehn F, Gövert A, Schlegel-Matthies K, Niederhaus C. Professionalisierung (angehender) Lehrkräfte für sprachbildenden Fachunterricht im Berufsfeld Ernährung und Hauswirtschaft mittels OER-Lektionen. In: Gerholz K-H, Hochleitner T, Maidanjuk I, Beil SB, eds. <i>Sprache(n) Im Beruf: Gestaltung Und Förderung Beruflicher Sprachbildung an Den Verschiedenen Lernorten.</i> ; 2025:169-186.","mla":"Meyer, Anja, et al. “Professionalisierung (Angehender) Lehrkräfte Für Sprachbildenden Fachunterricht Im Berufsfeld Ernährung Und Hauswirtschaft Mittels OER-Lektionen.” <i>Sprache(n) Im Beruf: Gestaltung Und Förderung Beruflicher Sprachbildung an Den Verschiedenen Lernorten.</i>, edited by Karl-Heinz Gerholz et al., 2025, pp. 169–86.","short":"A. Meyer, F. Dehn, A. Gövert, K. Schlegel-Matthies, C. Niederhaus, in: K.-H. Gerholz, T. Hochleitner, I. Maidanjuk, S.B. Beil (Eds.), Sprache(n) Im Beruf: Gestaltung Und Förderung Beruflicher Sprachbildung an Den Verschiedenen Lernorten., 2025, pp. 169–186.","chicago":"Meyer, Anja, Freya Dehn, Andre Gövert, Kirsten Schlegel-Matthies, and Constanze Niederhaus. “Professionalisierung (Angehender) Lehrkräfte Für Sprachbildenden Fachunterricht Im Berufsfeld Ernährung Und Hauswirtschaft Mittels OER-Lektionen.” In <i>Sprache(n) Im Beruf: Gestaltung Und Förderung Beruflicher Sprachbildung an Den Verschiedenen Lernorten.</i>, edited by Karl-Heinz Gerholz, Thomas Hochleitner, Ilona  Maidanjuk, and Shaleen Beil Beil, 169–86, 2025.","ieee":"A. Meyer, F. Dehn, A. Gövert, K. Schlegel-Matthies, and C. Niederhaus, “Professionalisierung (angehender) Lehrkräfte für sprachbildenden Fachunterricht im Berufsfeld Ernährung und Hauswirtschaft mittels OER-Lektionen.,” in <i>Sprache(n) im Beruf: Gestaltung und Förderung beruflicher Sprachbildung an den verschiedenen Lernorten.</i>, K.-H. Gerholz, T. Hochleitner, I. Maidanjuk, and S. B. Beil, Eds. 2025, pp. 169–186.","apa":"Meyer, A., Dehn, F., Gövert, A., Schlegel-Matthies, K., &#38; Niederhaus, C. (2025). Professionalisierung (angehender) Lehrkräfte für sprachbildenden Fachunterricht im Berufsfeld Ernährung und Hauswirtschaft mittels OER-Lektionen. In K.-H. Gerholz, T. Hochleitner, I. Maidanjuk, &#38; S. B. Beil (Eds.), <i>Sprache(n) im Beruf: Gestaltung und Förderung beruflicher Sprachbildung an den verschiedenen Lernorten.</i> (pp. 169–186)."},"page":"169-186","_id":"64988","language":[{"iso":"eng"}],"user_id":"54999","editor":[{"last_name":"Gerholz","first_name":"Karl-Heinz","full_name":"Gerholz, Karl-Heinz"},{"first_name":"Thomas","last_name":"Hochleitner","full_name":"Hochleitner, Thomas"},{"full_name":"Maidanjuk, Ilona ","last_name":"Maidanjuk","first_name":"Ilona "},{"full_name":"Beil, Shaleen Beil","first_name":"Shaleen Beil","last_name":"Beil"}],"title":"Professionalisierung (angehender) Lehrkräfte für sprachbildenden Fachunterricht im Berufsfeld Ernährung und Hauswirtschaft mittels OER-Lektionen.","status":"public","year":"2025","publication_identifier":{"unknown":["978-3-8474-2813-8"]},"author":[{"full_name":"Meyer, Anja","last_name":"Meyer","first_name":"Anja","id":"65697"},{"id":"82900","full_name":"Dehn, Freya","last_name":"Dehn","first_name":"Freya"},{"full_name":"Gövert, Andre","first_name":"Andre","last_name":"Gövert","id":"32937"},{"id":"459","last_name":"Schlegel-Matthies","first_name":"Kirsten","full_name":"Schlegel-Matthies, Kirsten"},{"last_name":"Niederhaus","first_name":"Constanze","full_name":"Niederhaus, Constanze","id":"54999"}],"date_updated":"2026-05-19T15:12:26Z"},{"department":[{"_id":"34"},{"_id":"7"},{"_id":"75"}],"type":"conference","date_created":"2025-09-12T11:22:18Z","quality_controlled":"1","citation":{"mla":"Illian, Marvin, et al. “Band Switching for Mobile Energy Optimization in 5G Networks and Beyond.” <i>Proceedings of the 20th Workshop on Mobility in the Evolving Internet Architecture (MobiArch)</i>, 2025, doi:<a href=\"https://doi.org/10.1145/3737897.3767294\">10.1145/3737897.3767294</a>.","bibtex":"@inproceedings{Illian_Luchterhandt_Wang_2025, title={Band Switching for Mobile Energy Optimization in 5G Networks and Beyond}, DOI={<a href=\"https://doi.org/10.1145/3737897.3767294\">10.1145/3737897.3767294</a>}, booktitle={Proceedings of the 20th Workshop on Mobility in the Evolving Internet Architecture (MobiArch)}, author={Illian, Marvin and Luchterhandt, Björn and Wang, Lin}, year={2025} }","ama":"Illian M, Luchterhandt B, Wang L. Band Switching for Mobile Energy Optimization in 5G Networks and Beyond. In: <i>Proceedings of the 20th Workshop on Mobility in the Evolving Internet Architecture (MobiArch)</i>. ; 2025. doi:<a href=\"https://doi.org/10.1145/3737897.3767294\">10.1145/3737897.3767294</a>","ieee":"M. Illian, B. Luchterhandt, and L. Wang, “Band Switching for Mobile Energy Optimization in 5G Networks and Beyond,” presented at the ACM Workshop on Mobility in the Evolving Internet Architecture (MobiArch), co-located with ACM MobiCom, Hong Kong, China, 2025, doi: <a href=\"https://doi.org/10.1145/3737897.3767294\">10.1145/3737897.3767294</a>.","apa":"Illian, M., Luchterhandt, B., &#38; Wang, L. (2025). Band Switching for Mobile Energy Optimization in 5G Networks and Beyond. <i>Proceedings of the 20th Workshop on Mobility in the Evolving Internet Architecture (MobiArch)</i>. ACM Workshop on Mobility in the Evolving Internet Architecture (MobiArch), co-located with ACM MobiCom, Hong Kong, China. <a href=\"https://doi.org/10.1145/3737897.3767294\">https://doi.org/10.1145/3737897.3767294</a>","short":"M. Illian, B. Luchterhandt, L. Wang, in: Proceedings of the 20th Workshop on Mobility in the Evolving Internet Architecture (MobiArch), 2025.","chicago":"Illian, Marvin, Björn Luchterhandt, and Lin Wang. “Band Switching for Mobile Energy Optimization in 5G Networks and Beyond.” In <i>Proceedings of the 20th Workshop on Mobility in the Evolving Internet Architecture (MobiArch)</i>, 2025. <a href=\"https://doi.org/10.1145/3737897.3767294\">https://doi.org/10.1145/3737897.3767294</a>."},"publication":"Proceedings of the 20th Workshop on Mobility in the Evolving Internet Architecture (MobiArch)","user_id":"44169","doi":"10.1145/3737897.3767294","_id":"61256","language":[{"iso":"eng"}],"date_updated":"2026-05-20T08:46:32Z","author":[{"id":"44169","full_name":"Illian, Marvin","first_name":"Marvin","last_name":"Illian","orcid":"0009-0007-2992-8346"},{"last_name":"Luchterhandt","first_name":"Björn","full_name":"Luchterhandt, Björn"},{"full_name":"Wang, Lin","orcid":"0000-0001-7181-6128","last_name":"Wang","first_name":"Lin","id":"102868"}],"conference":{"end_date":"2025-11-08","start_date":"2025-11-04","name":"ACM Workshop on Mobility in the Evolving Internet Architecture (MobiArch), co-located with ACM MobiCom","location":"Hong Kong, China"},"year":"2025","status":"public","title":"Band Switching for Mobile Energy Optimization in 5G Networks and Beyond"}]
