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Minimizing PVT-Variability by Exploiting the Zero Temperature Coefficient (ZTC) for Robust Delay Fault Testing. <i>In: IEEE International Test Conference (ITC’24), San Diego, CA, USA, November 2024</i>. IEEE International Test Conference (ITC’24), San Diego, CA, USA.","chicago":"Jafarzadeh, Hanieh, Florian Klemme, Jan Dennis Reimer, Hussam  Amrouch, Sybille Hellebrand, and Hans-Joachim Wunderlich. “Minimizing PVT-Variability by Exploiting the Zero Temperature Coefficient (ZTC) for Robust Delay Fault Testing.” In <i>In: IEEE International Test Conference (ITC’24), San Diego, CA, USA, November 2024</i>. San Diego, CA: IEEE, 2024.","ieee":"H. Jafarzadeh, F. Klemme, J. D. Reimer, H.  Amrouch, S. Hellebrand, and H.-J. Wunderlich, “Minimizing PVT-Variability by Exploiting the Zero Temperature Coefficient (ZTC) for Robust Delay Fault Testing,” presented at the IEEE International Test Conference (ITC’24), San Diego, CA, USA, 2024.","ama":"Jafarzadeh H, Klemme F, Reimer JD,  Amrouch H, Hellebrand S, Wunderlich H-J. Minimizing PVT-Variability by Exploiting the Zero Temperature Coefficient (ZTC) for Robust Delay Fault Testing. In: <i>In: IEEE International Test Conference (ITC’24), San Diego, CA, USA, November 2024</i>. IEEE; 2024."},"title":"Minimizing PVT-Variability by Exploiting the Zero Temperature Coefficient (ZTC) for Robust Delay Fault Testing","conference":{"start_date":"2024-11-03","name":"IEEE International Test Conference (ITC'24)","location":"San Diego, CA, USA","end_date":"2024-11-08"},"publisher":"IEEE","date_updated":"2025-03-31T15:57:16Z","date_created":"2024-09-04T09:25:20Z","author":[{"first_name":"Hanieh","full_name":"Jafarzadeh, Hanieh","last_name":"Jafarzadeh"},{"first_name":"Florian","last_name":"Klemme","full_name":"Klemme, Florian"},{"last_name":"Reimer","id":"36703","full_name":"Reimer, Jan Dennis","first_name":"Jan Dennis"},{"full_name":" Amrouch, Hussam","last_name":" Amrouch","first_name":"Hussam"},{"first_name":"Sybille","id":"209","full_name":"Hellebrand, Sybille","last_name":"Hellebrand","orcid":"0000-0002-3717-3939"},{"first_name":"Hans-Joachim","last_name":"Wunderlich","full_name":"Wunderlich, Hans-Joachim"}]},{"status":"public","publication":"Kunststoffland NRW Report","type":"journal_article","popular_science":"1","language":[{"iso":"ger"}],"_id":"58388","department":[{"_id":"9"},{"_id":"876"},{"_id":"321"}],"user_id":"22833","year":"2024","page":"24-25","citation":{"mla":"Austermeier, Laura, et al. “Kunststoffrecycling im Lehrangebot der Universität Paderborn .” <i>Kunststoffland NRW Report</i>, no. 03/2024, 2024, pp. 24–25.","short":"L. Austermeier, F. Brüning, V. Schöppner, A. Schlüter, Kunststoffland NRW Report (2024) 24–25.","bibtex":"@article{Austermeier_Brüning_Schöppner_Schlüter_2024, title={Kunststoffrecycling im Lehrangebot der Universität Paderborn }, number={03/2024}, journal={Kunststoffland NRW Report}, author={Austermeier, Laura and Brüning, Florian and Schöppner, Volker and Schlüter, Alexander}, year={2024}, pages={24–25} }","apa":"Austermeier, L., Brüning, F., Schöppner, V., &#38; Schlüter, A. (2024). Kunststoffrecycling im Lehrangebot der Universität Paderborn . <i>Kunststoffland NRW Report</i>, <i>03/2024</i>, 24–25.","ieee":"L. Austermeier, F. Brüning, V. Schöppner, and A. Schlüter, “Kunststoffrecycling im Lehrangebot der Universität Paderborn ,” <i>Kunststoffland NRW Report</i>, no. 03/2024, pp. 24–25, 2024.","chicago":"Austermeier, Laura, Florian Brüning, Volker Schöppner, and Alexander Schlüter. “Kunststoffrecycling im Lehrangebot der Universität Paderborn .” <i>Kunststoffland NRW Report</i>, no. 03/2024 (2024): 24–25.","ama":"Austermeier L, Brüning F, Schöppner V, Schlüter A. Kunststoffrecycling im Lehrangebot der Universität Paderborn . <i>Kunststoffland NRW Report</i>. 2024;(03/2024):24-25."},"publication_status":"published","issue":"03/2024","title":"Kunststoffrecycling im Lehrangebot der Universität Paderborn ","date_updated":"2025-04-01T08:06:33Z","date_created":"2025-01-29T07:49:50Z","author":[{"first_name":"Laura","last_name":"Austermeier","id":"45326","full_name":"Austermeier, Laura"},{"first_name":"Florian","id":"72920","full_name":"Brüning, Florian","last_name":"Brüning"},{"first_name":"Volker","id":"20530","full_name":"Schöppner, Volker","last_name":"Schöppner"},{"first_name":"Alexander","id":"103302","full_name":"Schlüter, Alexander","orcid":"0000-0002-2569-1624","last_name":"Schlüter"}]},{"type":"journal_article","publication":"TELEVIZION ","status":"public","_id":"59227","user_id":"66956","department":[{"_id":"459"}],"language":[{"iso":"ger"}],"publication_status":"published","publication_identifier":{"issn":["0943-4755 "]},"issue":"2","year":"2024","citation":{"ama":"Herzig B. Künstliche Intelligenz - Voraussetzungen für eine kompetente Nutzung und Bewertung. <i>TELEVIZION </i>. 2024;37(2):4-8.","chicago":"Herzig, Bardo. “Künstliche Intelligenz - Voraussetzungen für eine kompetente Nutzung und Bewertung.” <i>TELEVIZION </i> 37, no. 2 (2024): 4–8.","ieee":"B. Herzig, “Künstliche Intelligenz - Voraussetzungen für eine kompetente Nutzung und Bewertung,” <i>TELEVIZION </i>, vol. 37, no. 2, pp. 4–8, 2024.","short":"B. Herzig, TELEVIZION  37 (2024) 4–8.","mla":"Herzig, Bardo. “Künstliche Intelligenz - Voraussetzungen für eine kompetente Nutzung und Bewertung.” <i>TELEVIZION </i>, vol. 37, no. 2, 2024, pp. 4–8.","bibtex":"@article{Herzig_2024, title={Künstliche Intelligenz - Voraussetzungen für eine kompetente Nutzung und Bewertung}, volume={37}, number={2}, journal={TELEVIZION }, author={Herzig, Bardo}, year={2024}, pages={4–8} }","apa":"Herzig, B. (2024). Künstliche Intelligenz - Voraussetzungen für eine kompetente Nutzung und Bewertung. <i>TELEVIZION </i>, <i>37</i>(2), 4–8."},"page":"4-8","intvolume":"        37","date_updated":"2025-04-01T08:09:59Z","author":[{"last_name":"Herzig","id":"217","full_name":"Herzig, Bardo","first_name":"Bardo"}],"date_created":"2025-04-01T08:09:40Z","volume":37,"title":"Künstliche Intelligenz - Voraussetzungen für eine kompetente Nutzung und Bewertung"},{"doi":"10.1145/3613905.3650889","title":"\"I'm actually going to go and change these passwords\": Analyzing the Usability of Credential Audit Interfaces in Password Managers","date_created":"2024-05-14T21:13:26Z","author":[{"first_name":"Emiram","last_name":"Kablo","id":"46433","full_name":"Kablo, Emiram"},{"first_name":"Katharina","last_name":"Kader","full_name":"Kader, Katharina"},{"last_name":"Arias Cabarcos","id":"92804","full_name":"Arias Cabarcos, Patricia","first_name":"Patricia"}],"date_updated":"2025-04-01T13:57:21Z","oa":"1","publisher":"ACM","citation":{"chicago":"Kablo, Emiram, Katharina Kader, and Patricia Arias Cabarcos. “‘I’m Actually Going to Go and Change These Passwords’: Analyzing the Usability of Credential Audit Interfaces in Password Managers.” In <i>Extended Abstracts of the CHI Conference on Human Factors in Computing Systems</i>. ACM, 2024. <a href=\"https://doi.org/10.1145/3613905.3650889\">https://doi.org/10.1145/3613905.3650889</a>.","ieee":"E. Kablo, K. Kader, and P. Arias Cabarcos, “‘I’m actually going to go and change these passwords’: Analyzing the Usability of Credential Audit Interfaces in Password Managers,” 2024, doi: <a href=\"https://doi.org/10.1145/3613905.3650889\">10.1145/3613905.3650889</a>.","ama":"Kablo E, Kader K, Arias Cabarcos P. “I’m actually going to go and change these passwords”: Analyzing the Usability of Credential Audit Interfaces in Password Managers. In: <i>Extended Abstracts of the CHI Conference on Human Factors in Computing Systems</i>. ACM; 2024. doi:<a href=\"https://doi.org/10.1145/3613905.3650889\">10.1145/3613905.3650889</a>","apa":"Kablo, E., Kader, K., &#38; Arias Cabarcos, P. (2024). “I’m actually going to go and change these passwords”: Analyzing the Usability of Credential Audit Interfaces in Password Managers. <i>Extended Abstracts of the CHI Conference on Human Factors in Computing Systems</i>. <a href=\"https://doi.org/10.1145/3613905.3650889\">https://doi.org/10.1145/3613905.3650889</a>","bibtex":"@inproceedings{Kablo_Kader_Arias Cabarcos_2024, title={“I’m actually going to go and change these passwords”: Analyzing the Usability of Credential Audit Interfaces in Password Managers}, DOI={<a href=\"https://doi.org/10.1145/3613905.3650889\">10.1145/3613905.3650889</a>}, booktitle={Extended Abstracts of the CHI Conference on Human Factors in Computing Systems}, publisher={ACM}, author={Kablo, Emiram and Kader, Katharina and Arias Cabarcos, Patricia}, year={2024} }","mla":"Kablo, Emiram, et al. “‘I’m Actually Going to Go and Change These Passwords’: Analyzing the Usability of Credential Audit Interfaces in Password Managers.” <i>Extended Abstracts of the CHI Conference on Human Factors in Computing Systems</i>, ACM, 2024, doi:<a href=\"https://doi.org/10.1145/3613905.3650889\">10.1145/3613905.3650889</a>.","short":"E. Kablo, K. Kader, P. Arias Cabarcos, in: Extended Abstracts of the CHI Conference on Human Factors in Computing Systems, ACM, 2024."},"year":"2024","has_accepted_license":"1","publication_status":"published","file_date_updated":"2025-04-01T13:57:20Z","language":[{"iso":"eng"}],"ddc":["000"],"department":[{"_id":"679"}],"user_id":"46433","_id":"54291","status":"public","file":[{"relation":"main_file","content_type":"application/pdf","file_size":1029688,"access_level":"open_access","file_id":"59230","file_name":"CredentialAudits_RIS.pdf","date_updated":"2025-04-01T13:57:20Z","date_created":"2025-04-01T13:54:35Z","creator":"ekablo"}],"publication":"Extended Abstracts of the CHI Conference on Human Factors in Computing Systems","type":"conference"},{"title":"Energy Flexibility and Electrification of Industrial Process Heat: A Review","author":[{"full_name":"Knorr, Lukas","id":"90391","last_name":"Knorr","first_name":"Lukas"},{"full_name":"Schlosser, Florian","id":"88614","last_name":"Schlosser","first_name":"Florian"},{"id":"89059","full_name":"Divkovic, Denis","last_name":"Divkovic","first_name":"Denis"},{"full_name":"Buchenau, Nadja","last_name":"Buchenau","first_name":"Nadja"},{"orcid":"0000-0002-1538-089X","last_name":"Meschede","full_name":"Meschede, Henning","id":"86954","first_name":"Henning"}],"date_created":"2025-04-01T22:51:09Z","date_updated":"2025-04-01T22:51:16Z","publisher":"19th SDEWES Conference","citation":{"chicago":"Knorr, Lukas, Florian Schlosser, Denis Divkovic, Nadja Buchenau, and Henning Meschede. <i>Energy Flexibility and Electrification of Industrial Process Heat: A Review</i>. Rome: 19th SDEWES Conference, 2024.","ieee":"L. Knorr, F. Schlosser, D. Divkovic, N. Buchenau, and H. Meschede, <i>Energy Flexibility and Electrification of Industrial Process Heat: A Review</i>. Rome: 19th SDEWES Conference, 2024.","ama":"Knorr L, Schlosser F, Divkovic D, Buchenau N, Meschede H. <i>Energy Flexibility and Electrification of Industrial Process Heat: A Review</i>. 19th SDEWES Conference; 2024.","apa":"Knorr, L., Schlosser, F., Divkovic, D., Buchenau, N., &#38; Meschede, H. (2024). <i>Energy Flexibility and Electrification of Industrial Process Heat: A Review</i>. 19th SDEWES Conference.","bibtex":"@book{Knorr_Schlosser_Divkovic_Buchenau_Meschede_2024, place={Rome}, title={Energy Flexibility and Electrification of Industrial Process Heat: A Review}, publisher={19th SDEWES Conference}, author={Knorr, Lukas and Schlosser, Florian and Divkovic, Denis and Buchenau, Nadja and Meschede, Henning}, year={2024} }","mla":"Knorr, Lukas, et al. <i>Energy Flexibility and Electrification of Industrial Process Heat: A Review</i>. 19th SDEWES Conference, 2024.","short":"L. Knorr, F. Schlosser, D. Divkovic, N. Buchenau, H. Meschede, Energy Flexibility and Electrification of Industrial Process Heat: A Review, 19th SDEWES Conference, Rome, 2024."},"year":"2024","place":"Rome","language":[{"iso":"eng"}],"department":[{"_id":"644"}],"user_id":"90391","_id":"59234","status":"public","type":"misc"},{"year":"2024","page":"667-672","intvolume":"       114","citation":{"apa":"Polyvianchuk, A., Petruk, V., Polyvianchuk, N., Yurii, K., Semenenko, R., &#38; Arsenyeva, O. (2024). Approach for Optimal Selection of Innovative Actions for Residential Heating Systems. <i>Chemical Engineering Transactions</i>, <i>114</i>, 667–672. <a href=\"https://doi.org/10.3303/CET24114112\">https://doi.org/10.3303/CET24114112</a>","bibtex":"@inproceedings{Polyvianchuk_Petruk_Polyvianchuk_Yurii_Semenenko_Arsenyeva_2024, title={Approach for Optimal Selection of Innovative Actions for Residential Heating Systems}, volume={114}, DOI={<a href=\"https://doi.org/10.3303/CET24114112\">10.3303/CET24114112</a>}, booktitle={Chemical Engineering Transactions}, author={Polyvianchuk, Andrii and Petruk, Vasyl and Polyvianchuk, Natalia and Yurii, Kovalenko and Semenenko, Roman and Arsenyeva, Olga}, year={2024}, pages={667–672} }","short":"A. Polyvianchuk, V. Petruk, N. Polyvianchuk, K. Yurii, R. Semenenko, O. Arsenyeva, in: Chemical Engineering Transactions, 2024, pp. 667–672.","mla":"Polyvianchuk, Andrii, et al. “Approach for Optimal Selection of Innovative Actions for Residential Heating Systems.” <i>Chemical Engineering Transactions</i>, vol. 114, 2024, pp. 667–72, doi:<a href=\"https://doi.org/10.3303/CET24114112\">10.3303/CET24114112</a>.","ama":"Polyvianchuk A, Petruk V, Polyvianchuk N, Yurii K, Semenenko R, Arsenyeva O. Approach for Optimal Selection of Innovative Actions for Residential Heating Systems. In: <i>Chemical Engineering Transactions</i>. Vol 114. ; 2024:667-672. doi:<a href=\"https://doi.org/10.3303/CET24114112\">10.3303/CET24114112</a>","chicago":"Polyvianchuk, Andrii, Vasyl Petruk, Natalia Polyvianchuk, Kovalenko Yurii, Roman Semenenko, and Olga Arsenyeva. “Approach for Optimal Selection of Innovative Actions for Residential Heating Systems.” In <i>Chemical Engineering Transactions</i>, 114:667–72, 2024. <a href=\"https://doi.org/10.3303/CET24114112\">https://doi.org/10.3303/CET24114112</a>.","ieee":"A. Polyvianchuk, V. Petruk, N. Polyvianchuk, K. Yurii, R. Semenenko, and O. Arsenyeva, “Approach for Optimal Selection of Innovative Actions for Residential Heating Systems,” in <i>Chemical Engineering Transactions</i>, 2024, vol. 114, pp. 667–672, doi: <a href=\"https://doi.org/10.3303/CET24114112\">10.3303/CET24114112</a>."},"title":"Approach for Optimal Selection of Innovative Actions for Residential Heating Systems","doi":"10.3303/CET24114112","date_updated":"2025-04-02T10:54:33Z","volume":114,"date_created":"2025-04-02T10:43:55Z","author":[{"first_name":"Andrii","full_name":"Polyvianchuk, Andrii","last_name":"Polyvianchuk"},{"first_name":"Vasyl","full_name":"Petruk, Vasyl","last_name":"Petruk"},{"first_name":"Natalia","last_name":"Polyvianchuk","full_name":"Polyvianchuk, Natalia"},{"full_name":"Yurii, Kovalenko","last_name":"Yurii","first_name":"Kovalenko"},{"first_name":"Roman","last_name":"Semenenko","full_name":"Semenenko, Roman"},{"first_name":"Olga","id":"101505","full_name":"Arsenyeva, Olga","last_name":"Arsenyeva","orcid":"https://orcid.org/0000-0001-9013-6451"}],"status":"public","publication":"Chemical Engineering Transactions","type":"conference","language":[{"iso":"eng"}],"_id":"59245","department":[{"_id":"831"}],"user_id":"101505"},{"keyword":["delay zone","extrusion","melting modeling"],"language":[{"iso":"eng"}],"_id":"59243","department":[{"_id":"9"},{"_id":"321"},{"_id":"367"}],"user_id":"59363","abstract":[{"text":"Most single-screw extruders used in the plastics processing industry are plasticizing extruders, designed to melt solid pellets or powders within the screw channel during processing. In many cases, the efficiency of the melting process acts as the primary throughput-limiting factor. If the material melts too late in the process, it may not be sufficiently mixed, resulting in substandard product quality. Accurate prediction of the melting process is therefore essential for efficient and cost-effective machine design. A practical method for engineers is the modeling of the melting process using mathematical–physical models that can be solved without complex numerical methods. These models enable rapid calculations while still providing sufficient predictive accuracy. This study revisits the modified Tadmor model by Potente, which describes the melting process and predicts the delay-zone length, extending from the hopper front edge to the point of melt pool formation. Based on extensive experimental investigations, this model is adapted by redefining the flow temperatures at the phase boundary and accounting for surface porosity at the beginning of the melting zone. Additionally, the effect of variable solid bed dynamics on model accuracy is examined. Significant model improvements were achieved by accounting for reduced heat flow into the solid bed due to the porous surface structure in the solid conveying zone, along with a new assumption for the flow temperature at the phase boundary between the solid bed and melt film.","lang":"eng"}],"status":"public","publication":"Polymers","type":"journal_article","title":"Improvement in an Analytical Approach for Modeling the Melting Process in Single-Screw Extruders","doi":"10.3390/polym16223130","date_updated":"2025-04-02T11:21:00Z","volume":16,"author":[{"id":"20530","full_name":"Schöppner, Volker","last_name":"Schöppner","first_name":"Volker"},{"id":"72920","full_name":"Brüning, Florian","last_name":"Brüning","first_name":"Florian"},{"id":"45124","full_name":"Knaup, Felix","last_name":"Knaup","first_name":"Felix"}],"date_created":"2025-04-02T09:51:32Z","year":"2024","intvolume":"        16","page":"3130","citation":{"chicago":"Schöppner, Volker, Florian Brüning, and Felix Knaup. “Improvement in an Analytical Approach for Modeling the Melting Process in Single-Screw Extruders.” <i>Polymers</i> 16, no. 22 (2024): 3130. <a href=\"https://doi.org/10.3390/polym16223130\">https://doi.org/10.3390/polym16223130</a>.","ieee":"V. Schöppner, F. Brüning, and F. Knaup, “Improvement in an Analytical Approach for Modeling the Melting Process in Single-Screw Extruders,” <i>Polymers</i>, vol. 16, no. 22, p. 3130, 2024, doi: <a href=\"https://doi.org/10.3390/polym16223130\">10.3390/polym16223130</a>.","ama":"Schöppner V, Brüning F, Knaup F. Improvement in an Analytical Approach for Modeling the Melting Process in Single-Screw Extruders. <i>Polymers</i>. 2024;16(22):3130. doi:<a href=\"https://doi.org/10.3390/polym16223130\">10.3390/polym16223130</a>","apa":"Schöppner, V., Brüning, F., &#38; Knaup, F. (2024). Improvement in an Analytical Approach for Modeling the Melting Process in Single-Screw Extruders. <i>Polymers</i>, <i>16</i>(22), 3130. <a href=\"https://doi.org/10.3390/polym16223130\">https://doi.org/10.3390/polym16223130</a>","short":"V. Schöppner, F. Brüning, F. Knaup, Polymers 16 (2024) 3130.","bibtex":"@article{Schöppner_Brüning_Knaup_2024, title={Improvement in an Analytical Approach for Modeling the Melting Process in Single-Screw Extruders}, volume={16}, DOI={<a href=\"https://doi.org/10.3390/polym16223130\">10.3390/polym16223130</a>}, number={22}, journal={Polymers}, author={Schöppner, Volker and Brüning, Florian and Knaup, Felix}, year={2024}, pages={3130} }","mla":"Schöppner, Volker, et al. “Improvement in an Analytical Approach for Modeling the Melting Process in Single-Screw Extruders.” <i>Polymers</i>, vol. 16, no. 22, 2024, p. 3130, doi:<a href=\"https://doi.org/10.3390/polym16223130\">10.3390/polym16223130</a>."},"quality_controlled":"1","issue":"22"},{"title":"Probing ferroelectric phase transitions in barium titanate single crystals via in-situ second harmonic generation microscopy","publisher":"AIP Publishing","date_created":"2025-04-02T15:57:11Z","year":"2024","quality_controlled":"1","issue":"15","language":[{"iso":"eng"}],"abstract":[{"text":"Ferroelectric materials play a crucial role in a broad range of technologies due to their unique properties that are deeply connected to the pattern and behavior of their ferroelectric (FE) domains. Chief among them, barium titanate (BaTiO3; BTO) sees widespread applications such as in electronics but equally is a ferroelectric model system for fundamental research, e.g., to study the interplay of such FE domains, the domain walls (DWs), and their macroscopic properties, owed to BTO’s multiple and experimentally accessible phase transitions. Here, we employ Second Harmonic Generation Microscopy (SHGM) to in situ investigate the cubic-to-tetragonal (at ∼126°C) and the tetragonal-to-orthorhombic (at ∼5°C) phase transition in single-crystalline BTO via three-dimensional (3D) DW mapping. We demonstrate that SHGM imaging provides the direct visualization of FE domain switching as well as the domain dynamics in 3D, shedding light on the interplay of the domain structure and phase transition. These results allow us to extract the different transition temperatures locally, to unveil the hysteresis behavior, and to determine the type of phase transition at play (first/second order) from the recorded SHGM data. The capabilities of SHGM in uncovering these crucial phenomena can easily be applied to other ferroelectrics to provide new possibilities for in situ engineering of advanced ferroic devices.","lang":"eng"}],"publication":"Journal of Applied Physics","doi":"10.1063/5.0237769","main_file_link":[{"url":" https://doi.org/10.1063/5.0237769","open_access":"1"}],"date_updated":"2025-04-02T15:59:55Z","oa":"1","volume":136,"author":[{"first_name":"Benjamin","last_name":"Kirbus","full_name":"Kirbus, Benjamin"},{"first_name":"Samuel D.","last_name":"Seddon","full_name":"Seddon, Samuel D."},{"full_name":"Kiseleva, Iuliia","last_name":"Kiseleva","first_name":"Iuliia"},{"first_name":"Elke","last_name":"Beyreuther","full_name":"Beyreuther, Elke"},{"id":"22501","full_name":"Rüsing, Michael","last_name":"Rüsing","orcid":"0000-0003-4682-4577","first_name":"Michael"},{"first_name":"Lukas M.","last_name":"Eng","full_name":"Eng, Lukas M."}],"intvolume":"       136","citation":{"apa":"Kirbus, B., Seddon, S. D., Kiseleva, I., Beyreuther, E., Rüsing, M., &#38; Eng, L. M. (2024). Probing ferroelectric phase transitions in barium titanate single crystals via in-situ second harmonic generation microscopy. <i>Journal of Applied Physics</i>, <i>136</i>(15), Article 154102. <a href=\"https://doi.org/10.1063/5.0237769\">https://doi.org/10.1063/5.0237769</a>","short":"B. Kirbus, S.D. Seddon, I. Kiseleva, E. Beyreuther, M. Rüsing, L.M. Eng, Journal of Applied Physics 136 (2024).","bibtex":"@article{Kirbus_Seddon_Kiseleva_Beyreuther_Rüsing_Eng_2024, title={Probing ferroelectric phase transitions in barium titanate single crystals via in-situ second harmonic generation microscopy}, volume={136}, DOI={<a href=\"https://doi.org/10.1063/5.0237769\">10.1063/5.0237769</a>}, number={15154102}, journal={Journal of Applied Physics}, publisher={AIP Publishing}, author={Kirbus, Benjamin and Seddon, Samuel D. and Kiseleva, Iuliia and Beyreuther, Elke and Rüsing, Michael and Eng, Lukas M.}, year={2024} }","mla":"Kirbus, Benjamin, et al. “Probing Ferroelectric Phase Transitions in Barium Titanate Single Crystals via In-Situ Second Harmonic Generation Microscopy.” <i>Journal of Applied Physics</i>, vol. 136, no. 15, 154102, AIP Publishing, 2024, doi:<a href=\"https://doi.org/10.1063/5.0237769\">10.1063/5.0237769</a>.","chicago":"Kirbus, Benjamin, Samuel D. Seddon, Iuliia Kiseleva, Elke Beyreuther, Michael Rüsing, and Lukas M. Eng. “Probing Ferroelectric Phase Transitions in Barium Titanate Single Crystals via In-Situ Second Harmonic Generation Microscopy.” <i>Journal of Applied Physics</i> 136, no. 15 (2024). <a href=\"https://doi.org/10.1063/5.0237769\">https://doi.org/10.1063/5.0237769</a>.","ieee":"B. Kirbus, S. D. Seddon, I. Kiseleva, E. Beyreuther, M. Rüsing, and L. M. Eng, “Probing ferroelectric phase transitions in barium titanate single crystals via in-situ second harmonic generation microscopy,” <i>Journal of Applied Physics</i>, vol. 136, no. 15, Art. no. 154102, 2024, doi: <a href=\"https://doi.org/10.1063/5.0237769\">10.1063/5.0237769</a>.","ama":"Kirbus B, Seddon SD, Kiseleva I, Beyreuther E, Rüsing M, Eng LM. Probing ferroelectric phase transitions in barium titanate single crystals via in-situ second harmonic generation microscopy. <i>Journal of Applied Physics</i>. 2024;136(15). doi:<a href=\"https://doi.org/10.1063/5.0237769\">10.1063/5.0237769</a>"},"publication_identifier":{"issn":["0021-8979","1089-7550"]},"publication_status":"published","article_number":"154102","article_type":"original","_id":"59269","department":[{"_id":"15"},{"_id":"623"},{"_id":"288"}],"user_id":"22501","status":"public","type":"journal_article"},{"publisher":"Wiley","date_created":"2025-04-02T16:04:58Z","title":"Lattice Dynamics of LiNb(1–x)Ta(x)O3 Solid Solutions: Theory and Experiment","issue":"1","year":"2024","language":[{"iso":"eng"}],"publication":"physica status solidi (a)","abstract":[{"text":"Lithium niobate (LNO) and lithium tantalate (LTO) see widespread use in fundamental research and commercial technologies reaching from electronics over classical optics to integrated quantum communication. The mixed crystal system lithium niobate tantalate (LNT) allows for the dedicate engineering of material properties by combining the advantages of the two parental materials LNO and LTO. Vibrational spectroscopies such as Raman spectroscopy or (Fourier transform) infrared (IR) spectroscopy are vital techniques to provide detailed insight into the material properties, which is central to the analysis and optimization of devices. This work presents a joint experimental–theoretical approach allowing to unambiguously assign the spectral features in the LNT material family through both Raman and IR spectroscopy, as well as providing an in‐depth explanation for the observed scattering efficiencies based on first‐principles calculations. The phononic contribution to the static dielectric tensor is calculated from the experimental and theoretical data using the generalized Lyddane–Sachs–Teller relation and compared with the results of the first‐principles calculations.","lang":"eng"}],"oa":"1","date_updated":"2025-04-02T16:07:19Z","volume":222,"author":[{"first_name":"Felix","full_name":"Bernhardt, Felix","last_name":"Bernhardt"},{"full_name":"Gharat, Soham","last_name":"Gharat","first_name":"Soham"},{"first_name":"Alexander","last_name":"Kapp","full_name":"Kapp, Alexander"},{"first_name":"Florian","last_name":"Pfeiffer","full_name":"Pfeiffer, Florian"},{"full_name":"Buschbeck, Robin","last_name":"Buschbeck","first_name":"Robin"},{"first_name":"Franz","last_name":"Hempel","full_name":"Hempel, Franz"},{"first_name":"Oleksiy","last_name":"Pashkin","full_name":"Pashkin, Oleksiy"},{"first_name":"Susanne C.","full_name":"Kehr, Susanne C.","last_name":"Kehr"},{"full_name":"Rüsing, Michael","id":"22501","orcid":"0000-0003-4682-4577","last_name":"Rüsing","first_name":"Michael"},{"first_name":"Simone","full_name":"Sanna, Simone","last_name":"Sanna"},{"full_name":"Eng, Lukas M.","last_name":"Eng","first_name":"Lukas M."}],"doi":"10.1002/pssa.202300968","main_file_link":[{"open_access":"1","url":"https://doi.org/10.1002/pssa.202300968"}],"publication_identifier":{"issn":["1862-6300","1862-6319"]},"publication_status":"published","page":"2300968","intvolume":"       222","citation":{"apa":"Bernhardt, F., Gharat, S., Kapp, A., Pfeiffer, F., Buschbeck, R., Hempel, F., Pashkin, O., Kehr, S. C., Rüsing, M., Sanna, S., &#38; Eng, L. M. (2024). Lattice Dynamics of LiNb(1–x)Ta(x)O3 Solid Solutions: Theory and Experiment. <i>Physica Status Solidi (a)</i>, <i>222</i>(1), 2300968. <a href=\"https://doi.org/10.1002/pssa.202300968\">https://doi.org/10.1002/pssa.202300968</a>","mla":"Bernhardt, Felix, et al. “Lattice Dynamics of LiNb(1–x)Ta(x)O3 Solid Solutions: Theory and Experiment.” <i>Physica Status Solidi (a)</i>, vol. 222, no. 1, Wiley, 2024, p. 2300968, doi:<a href=\"https://doi.org/10.1002/pssa.202300968\">10.1002/pssa.202300968</a>.","bibtex":"@article{Bernhardt_Gharat_Kapp_Pfeiffer_Buschbeck_Hempel_Pashkin_Kehr_Rüsing_Sanna_et al._2024, title={Lattice Dynamics of LiNb(1–x)Ta(x)O3 Solid Solutions: Theory and Experiment}, volume={222}, DOI={<a href=\"https://doi.org/10.1002/pssa.202300968\">10.1002/pssa.202300968</a>}, number={1}, journal={physica status solidi (a)}, publisher={Wiley}, author={Bernhardt, Felix and Gharat, Soham and Kapp, Alexander and Pfeiffer, Florian and Buschbeck, Robin and Hempel, Franz and Pashkin, Oleksiy and Kehr, Susanne C. and Rüsing, Michael and Sanna, Simone and et al.}, year={2024}, pages={2300968} }","short":"F. Bernhardt, S. Gharat, A. Kapp, F. Pfeiffer, R. Buschbeck, F. Hempel, O. Pashkin, S.C. Kehr, M. Rüsing, S. Sanna, L.M. Eng, Physica Status Solidi (a) 222 (2024) 2300968.","ieee":"F. Bernhardt <i>et al.</i>, “Lattice Dynamics of LiNb(1–x)Ta(x)O3 Solid Solutions: Theory and Experiment,” <i>physica status solidi (a)</i>, vol. 222, no. 1, p. 2300968, 2024, doi: <a href=\"https://doi.org/10.1002/pssa.202300968\">10.1002/pssa.202300968</a>.","chicago":"Bernhardt, Felix, Soham Gharat, Alexander Kapp, Florian Pfeiffer, Robin Buschbeck, Franz Hempel, Oleksiy Pashkin, et al. “Lattice Dynamics of LiNb(1–x)Ta(x)O3 Solid Solutions: Theory and Experiment.” <i>Physica Status Solidi (a)</i> 222, no. 1 (2024): 2300968. <a href=\"https://doi.org/10.1002/pssa.202300968\">https://doi.org/10.1002/pssa.202300968</a>.","ama":"Bernhardt F, Gharat S, Kapp A, et al. Lattice Dynamics of LiNb(1–x)Ta(x)O3 Solid Solutions: Theory and Experiment. <i>physica status solidi (a)</i>. 2024;222(1):2300968. doi:<a href=\"https://doi.org/10.1002/pssa.202300968\">10.1002/pssa.202300968</a>"},"_id":"59271","department":[{"_id":"15"},{"_id":"623"},{"_id":"288"}],"user_id":"22501","type":"journal_article","status":"public"},{"language":[{"iso":"eng"}],"publication":"Journal of Alloys and Compounds","abstract":[{"lang":"eng","text":"Lithium niobate tantalate (LiNb1−xTaxO3, LNT) solid solutions offer exciting new possibilities for applications ranging from optics, piezotronics, and electronics beyond the capabilities of the widely used singular compounds of lithium niobate (LiNbO3, LN) or lithium tantalate (LiTaO3, LT). Crystal growth of homogeneous LNT single crystals by the Czochralski method is still challenging. One key aspect of homogeneous growth is the accurate knowledge of thermal conductivity through the crystal boule during the growth, which is central to control the crystal growth. Therefore, the temperature dependent thermal conductivity of pure LN, LT, and LNT solid solutions, as well as of selected doped LN and LT crystals (Mg, Zn) was investigated across the temperature range from 300 to 1300 K. The results that span across the whole composition range can directly be applied for optimizing growth conditions of both LNT solid solutions as well as doped and undoped LN and LT crystals."}],"date_created":"2025-04-02T16:00:56Z","publisher":"Elsevier BV","title":"Thermal conductivity in solid solutions of lithium niobate tantalate single crystals from 300 K up to 1300 K","quality_controlled":"1","year":"2024","user_id":"22501","department":[{"_id":"15"},{"_id":"288"},{"_id":"623"}],"_id":"59270","article_number":"176549","article_type":"original","type":"journal_article","status":"public","author":[{"full_name":"Bashir, Umar","last_name":"Bashir","first_name":"Umar"},{"orcid":"0000-0003-4682-4577","last_name":"Rüsing","id":"22501","full_name":"Rüsing, Michael","first_name":"Michael"},{"full_name":"Klimm, Detlef","last_name":"Klimm","first_name":"Detlef"},{"full_name":"Blukis, Roberts","last_name":"Blukis","first_name":"Roberts"},{"first_name":"Boris","last_name":"Koppitz","full_name":"Koppitz, Boris"},{"last_name":"Eng","full_name":"Eng, Lukas M.","first_name":"Lukas M."},{"full_name":"Bickermann, Matthias","last_name":"Bickermann","first_name":"Matthias"},{"first_name":"Steffen","last_name":"Ganschow","full_name":"Ganschow, Steffen"}],"volume":1008,"date_updated":"2025-04-02T16:02:26Z","doi":"10.1016/j.jallcom.2024.176549","publication_status":"published","publication_identifier":{"issn":["0925-8388"]},"citation":{"ama":"Bashir U, Rüsing M, Klimm D, et al. Thermal conductivity in solid solutions of lithium niobate tantalate single crystals from 300 K up to 1300 K. <i>Journal of Alloys and Compounds</i>. 2024;1008. doi:<a href=\"https://doi.org/10.1016/j.jallcom.2024.176549\">10.1016/j.jallcom.2024.176549</a>","ieee":"U. Bashir <i>et al.</i>, “Thermal conductivity in solid solutions of lithium niobate tantalate single crystals from 300 K up to 1300 K,” <i>Journal of Alloys and Compounds</i>, vol. 1008, Art. no. 176549, 2024, doi: <a href=\"https://doi.org/10.1016/j.jallcom.2024.176549\">10.1016/j.jallcom.2024.176549</a>.","chicago":"Bashir, Umar, Michael Rüsing, Detlef Klimm, Roberts Blukis, Boris Koppitz, Lukas M. Eng, Matthias Bickermann, and Steffen Ganschow. “Thermal Conductivity in Solid Solutions of Lithium Niobate Tantalate Single Crystals from 300 K up to 1300 K.” <i>Journal of Alloys and Compounds</i> 1008 (2024). <a href=\"https://doi.org/10.1016/j.jallcom.2024.176549\">https://doi.org/10.1016/j.jallcom.2024.176549</a>.","apa":"Bashir, U., Rüsing, M., Klimm, D., Blukis, R., Koppitz, B., Eng, L. M., Bickermann, M., &#38; Ganschow, S. (2024). Thermal conductivity in solid solutions of lithium niobate tantalate single crystals from 300 K up to 1300 K. <i>Journal of Alloys and Compounds</i>, <i>1008</i>, Article 176549. <a href=\"https://doi.org/10.1016/j.jallcom.2024.176549\">https://doi.org/10.1016/j.jallcom.2024.176549</a>","mla":"Bashir, Umar, et al. “Thermal Conductivity in Solid Solutions of Lithium Niobate Tantalate Single Crystals from 300 K up to 1300 K.” <i>Journal of Alloys and Compounds</i>, vol. 1008, 176549, Elsevier BV, 2024, doi:<a href=\"https://doi.org/10.1016/j.jallcom.2024.176549\">10.1016/j.jallcom.2024.176549</a>.","bibtex":"@article{Bashir_Rüsing_Klimm_Blukis_Koppitz_Eng_Bickermann_Ganschow_2024, title={Thermal conductivity in solid solutions of lithium niobate tantalate single crystals from 300 K up to 1300 K}, volume={1008}, DOI={<a href=\"https://doi.org/10.1016/j.jallcom.2024.176549\">10.1016/j.jallcom.2024.176549</a>}, number={176549}, journal={Journal of Alloys and Compounds}, publisher={Elsevier BV}, author={Bashir, Umar and Rüsing, Michael and Klimm, Detlef and Blukis, Roberts and Koppitz, Boris and Eng, Lukas M. and Bickermann, Matthias and Ganschow, Steffen}, year={2024} }","short":"U. Bashir, M. Rüsing, D. Klimm, R. Blukis, B. Koppitz, L.M. Eng, M. Bickermann, S. Ganschow, Journal of Alloys and Compounds 1008 (2024)."},"intvolume":"      1008"}]
