[{"volume":30,"author":[{"full_name":"Zazzi, Andrea","last_name":"Zazzi","first_name":"Andrea"},{"last_name":"Müller","full_name":"Müller, Juliana","first_name":"Juliana"},{"first_name":"Ibrahim","last_name":"Ghannam","full_name":"Ghannam, Ibrahim"},{"full_name":"Battermann, Moritz","last_name":"Battermann","first_name":"Moritz"},{"first_name":"Gayatri Vasudevan","last_name":"Rajeswari","full_name":"Rajeswari, Gayatri Vasudevan"},{"last_name":"Weizel","orcid":"https://orcid.org/0000-0003-2699-9839","full_name":"Weizel, Maxim","id":"44271","first_name":"Maxim"},{"last_name":"Scheytt","orcid":"https://orcid.org/0000-0002-5950-6618","id":"37144","full_name":"Scheytt, J. Christoph","first_name":"J. Christoph"},{"last_name":"Witzens","full_name":"Witzens, Jeremy","first_name":"Jeremy"}],"date_updated":"2025-10-30T09:12:01Z","doi":"10.1364/oe.441406","publication_identifier":{"issn":["1094-4087"]},"publication_status":"published","intvolume":"        30","citation":{"ama":"Zazzi A, Müller J, Ghannam I, et al. Wideband SiN pulse interleaver for optically-enabled analog-to-digital conversion: a device-to-system analysis with cyclic equalization. <i>Optics Express</i>. 2022;30(3). doi:<a href=\"https://doi.org/10.1364/oe.441406\">10.1364/oe.441406</a>","ieee":"A. Zazzi <i>et al.</i>, “Wideband SiN pulse interleaver for optically-enabled analog-to-digital conversion: a device-to-system analysis with cyclic equalization,” <i>Optics Express</i>, vol. 30, no. 3, Art. no. 4444, 2022, doi: <a href=\"https://doi.org/10.1364/oe.441406\">10.1364/oe.441406</a>.","chicago":"Zazzi, Andrea, Juliana Müller, Ibrahim Ghannam, Moritz Battermann, Gayatri Vasudevan Rajeswari, Maxim Weizel, J. Christoph Scheytt, and Jeremy Witzens. “Wideband SiN Pulse Interleaver for Optically-Enabled Analog-to-Digital Conversion: A Device-to-System Analysis with Cyclic Equalization.” <i>Optics Express</i> 30, no. 3 (2022). <a href=\"https://doi.org/10.1364/oe.441406\">https://doi.org/10.1364/oe.441406</a>.","apa":"Zazzi, A., Müller, J., Ghannam, I., Battermann, M., Rajeswari, G. V., Weizel, M., Scheytt, J. C., &#38; Witzens, J. (2022). Wideband SiN pulse interleaver for optically-enabled analog-to-digital conversion: a device-to-system analysis with cyclic equalization. <i>Optics Express</i>, <i>30</i>(3), Article 4444. <a href=\"https://doi.org/10.1364/oe.441406\">https://doi.org/10.1364/oe.441406</a>","mla":"Zazzi, Andrea, et al. “Wideband SiN Pulse Interleaver for Optically-Enabled Analog-to-Digital Conversion: A Device-to-System Analysis with Cyclic Equalization.” <i>Optics Express</i>, vol. 30, no. 3, 4444, Optica Publishing Group, 2022, doi:<a href=\"https://doi.org/10.1364/oe.441406\">10.1364/oe.441406</a>.","short":"A. Zazzi, J. Müller, I. Ghannam, M. Battermann, G.V. Rajeswari, M. Weizel, J.C. Scheytt, J. Witzens, Optics Express 30 (2022).","bibtex":"@article{Zazzi_Müller_Ghannam_Battermann_Rajeswari_Weizel_Scheytt_Witzens_2022, title={Wideband SiN pulse interleaver for optically-enabled analog-to-digital conversion: a device-to-system analysis with cyclic equalization}, volume={30}, DOI={<a href=\"https://doi.org/10.1364/oe.441406\">10.1364/oe.441406</a>}, number={34444}, journal={Optics Express}, publisher={Optica Publishing Group}, author={Zazzi, Andrea and Müller, Juliana and Ghannam, Ibrahim and Battermann, Moritz and Rajeswari, Gayatri Vasudevan and Weizel, Maxim and Scheytt, J. Christoph and Witzens, Jeremy}, year={2022} }"},"department":[{"_id":"58"},{"_id":"230"}],"user_id":"44271","_id":"34230","project":[{"_id":"303","name":"SPP 2111; TP: Ultrabreitbandiger Photonisch-Elektronischer Analog-Digital-Wandler (PACE) - Phase 2"}],"article_number":"4444","type":"journal_article","status":"public","date_created":"2022-12-06T10:15:54Z","publisher":"Optica Publishing Group","title":"Wideband SiN pulse interleaver for optically-enabled analog-to-digital conversion: a device-to-system analysis with cyclic equalization","issue":"3","year":"2022","language":[{"iso":"eng"}],"publication":"Optics Express","abstract":[{"lang":"eng","text":"We present the design and experimental characterization of a silicon nitride pulse interleaver based on coupled resonator optical waveguide filters. In order to achieve a targeted free spectral range of 1.44 THz, which is large given the reduced optical confinement of the silicon nitride platform, individual ring resonators are designed with tapered waveguides. Its application to time-interleaved photonically-assisted ADCs is analyzed by combining experimental characterization of the photonic integrated circuit with a comprehensive model of the entire ADC. The impact of fundamental signal distortion and noise sources affecting the converter is investigated and suitable equalization techniques at the digital signal processing level are evaluated. The novel application of a simple but powerful equalization filter in the DSP domain allows for a significant improvement of the digitized signal SNR. An ENOB of 5 over a 75 GHz bandwidth (150 GS/s) and an ENOB of 4.3 over a 100 GHz bandwidth (200 GS/s) are expected to be achievable with compact and off-the-shelf single-section semiconductor mode locked lasers, that can be further improved with lower noise light sources."}]},{"publication":"IEEE Transactions on Microwave Theory and Techniques","language":[{"iso":"eng"}],"issue":"10","year":"2022","publisher":"Institute of Electrical and Electronics Engineers (IEEE)","date_created":"2022-12-06T11:05:28Z","title":"Noise Processes and Nonlinear Mechanisms in Optoelectronic Phase-Locked Loop Using a Balanced Optical Microwave Phase Detector","type":"journal_article","status":"public","project":[{"_id":"298","name":"FOR 2863: Metrologie für die THz Kommunikation (Meteracom)"},{"_id":"314","name":"FOR 2863:  Metrologie für die THz Kommunikation, TP B2: Rückführbare Terahertz Transceiver"}],"_id":"34239","user_id":"44271","department":[{"_id":"58"},{"_id":"230"}],"publication_status":"published","publication_identifier":{"issn":["0018-9480","1557-9670"]},"citation":{"bibtex":"@article{Bahmanian_Scheytt_2022, title={Noise Processes and Nonlinear Mechanisms in Optoelectronic Phase-Locked Loop Using a Balanced Optical Microwave Phase Detector}, volume={70}, DOI={<a href=\"https://doi.org/10.1109/tmtt.2022.3197621\">10.1109/tmtt.2022.3197621</a>}, number={10}, journal={IEEE Transactions on Microwave Theory and Techniques}, publisher={Institute of Electrical and Electronics Engineers (IEEE)}, author={Bahmanian, Meysam and Scheytt, J. Christoph}, year={2022}, pages={4422–4435} }","mla":"Bahmanian, Meysam, and J. Christoph Scheytt. “Noise Processes and Nonlinear Mechanisms in Optoelectronic Phase-Locked Loop Using a Balanced Optical Microwave Phase Detector.” <i>IEEE Transactions on Microwave Theory and Techniques</i>, vol. 70, no. 10, Institute of Electrical and Electronics Engineers (IEEE), 2022, pp. 4422–35, doi:<a href=\"https://doi.org/10.1109/tmtt.2022.3197621\">10.1109/tmtt.2022.3197621</a>.","short":"M. Bahmanian, J.C. Scheytt, IEEE Transactions on Microwave Theory and Techniques 70 (2022) 4422–4435.","apa":"Bahmanian, M., &#38; Scheytt, J. C. (2022). Noise Processes and Nonlinear Mechanisms in Optoelectronic Phase-Locked Loop Using a Balanced Optical Microwave Phase Detector. <i>IEEE Transactions on Microwave Theory and Techniques</i>, <i>70</i>(10), 4422–4435. <a href=\"https://doi.org/10.1109/tmtt.2022.3197621\">https://doi.org/10.1109/tmtt.2022.3197621</a>","chicago":"Bahmanian, Meysam, and J. Christoph Scheytt. “Noise Processes and Nonlinear Mechanisms in Optoelectronic Phase-Locked Loop Using a Balanced Optical Microwave Phase Detector.” <i>IEEE Transactions on Microwave Theory and Techniques</i> 70, no. 10 (2022): 4422–35. <a href=\"https://doi.org/10.1109/tmtt.2022.3197621\">https://doi.org/10.1109/tmtt.2022.3197621</a>.","ieee":"M. Bahmanian and J. C. Scheytt, “Noise Processes and Nonlinear Mechanisms in Optoelectronic Phase-Locked Loop Using a Balanced Optical Microwave Phase Detector,” <i>IEEE Transactions on Microwave Theory and Techniques</i>, vol. 70, no. 10, pp. 4422–4435, 2022, doi: <a href=\"https://doi.org/10.1109/tmtt.2022.3197621\">10.1109/tmtt.2022.3197621</a>.","ama":"Bahmanian M, Scheytt JC. Noise Processes and Nonlinear Mechanisms in Optoelectronic Phase-Locked Loop Using a Balanced Optical Microwave Phase Detector. <i>IEEE Transactions on Microwave Theory and Techniques</i>. 2022;70(10):4422-4435. doi:<a href=\"https://doi.org/10.1109/tmtt.2022.3197621\">10.1109/tmtt.2022.3197621</a>"},"page":"4422-4435","intvolume":"        70","date_updated":"2025-10-30T09:21:12Z","author":[{"first_name":"Meysam","full_name":"Bahmanian, Meysam","id":"69233","last_name":"Bahmanian"},{"first_name":"J. Christoph","full_name":"Scheytt, J. Christoph","id":"37144","orcid":"https://orcid.org/0000-0002-5950-6618","last_name":"Scheytt"}],"volume":70,"doi":"10.1109/tmtt.2022.3197621"},{"date_updated":"2025-11-04T12:25:54Z","publisher":"PMLR","volume":220,"date_created":"2025-11-04T12:24:24Z","author":[{"first_name":"Nicholas","last_name":"Roberts","full_name":"Roberts, Nicholas"},{"first_name":"Samuel","last_name":"Guo","full_name":"Guo, Samuel"},{"first_name":"Cong","full_name":"Xu, Cong","last_name":"Xu"},{"last_name":"Talwalkar","full_name":"Talwalkar, Ameet","first_name":"Ameet"},{"first_name":"David","last_name":"Lander","full_name":"Lander, David"},{"first_name":"Lvfang","full_name":"Tao, Lvfang","last_name":"Tao"},{"last_name":"Cai","full_name":"Cai, Linhang","first_name":"Linhang"},{"first_name":"Shuaicheng","last_name":"Niu","full_name":"Niu, Shuaicheng"},{"first_name":"Jianyu","full_name":"Heng, Jianyu","last_name":"Heng"},{"last_name":"Qin","full_name":"Qin, Hongyang","first_name":"Hongyang"},{"first_name":"Minwen","full_name":"Deng, Minwen","last_name":"Deng"},{"full_name":"Hog, Johannes","last_name":"Hog","first_name":"Johannes"},{"first_name":"Alexander","last_name":"Pfefferle","full_name":"Pfefferle, Alexander"},{"full_name":"Ammanaghatta Shivakumar, Sushil","last_name":"Ammanaghatta Shivakumar","first_name":"Sushil"},{"first_name":"Arjun","full_name":"Krishnakumar, Arjun","last_name":"Krishnakumar"},{"first_name":"Yubo","last_name":"Wang","full_name":"Wang, Yubo"},{"first_name":"Rhea","full_name":"Sukthanker, Rhea","last_name":"Sukthanker"},{"full_name":"Hutter, Frank","last_name":"Hutter","first_name":"Frank"},{"last_name":"Hasanaj","full_name":"Hasanaj, Euxhen","first_name":"Euxhen"},{"first_name":"Tien-Dung","full_name":"Le, Tien-Dung","last_name":"Le"},{"full_name":"Khodak, Mikhail","last_name":"Khodak","first_name":"Mikhail"},{"first_name":"Yuriy","full_name":"Nevmyvaka, Yuriy","last_name":"Nevmyvaka"},{"full_name":"Rasul, Kashif","last_name":"Rasul","first_name":"Kashif"},{"full_name":"Sala, Frederic","last_name":"Sala","first_name":"Frederic"},{"full_name":"Schneider, Anderson","last_name":"Schneider","first_name":"Anderson"},{"full_name":"Shen, Junhong","last_name":"Shen","first_name":"Junhong"},{"first_name":"Evan","full_name":"Sparks, Evan","last_name":"Sparks"}],"title":"AutoML Decathlon: Diverse Tasks, Modern Methods, and Efficiency at Scale","year":"2022","page":"151–170","intvolume":"       220","citation":{"short":"N. Roberts, S. Guo, C. Xu, A. Talwalkar, D. Lander, L. Tao, L. Cai, S. Niu, J. Heng, H. Qin, M. Deng, J. Hog, A. Pfefferle, S. Ammanaghatta Shivakumar, A. Krishnakumar, Y. Wang, R. Sukthanker, F. Hutter, E. Hasanaj, T.-D. Le, M. Khodak, Y. Nevmyvaka, K. Rasul, F. Sala, A. Schneider, J. Shen, E. Sparks, in: M. Ciccone, G. Stolovitzky, J. Albrecht (Eds.), Proceedings of the NeurIPS 2022 Competitions Track, PMLR, 2022, pp. 151–170.","bibtex":"@inproceedings{Roberts_Guo_Xu_Talwalkar_Lander_Tao_Cai_Niu_Heng_Qin_et al._2022, series={Proceedings of Machine Learning Research}, title={AutoML Decathlon: Diverse Tasks, Modern Methods, and Efficiency at Scale}, volume={220}, booktitle={Proceedings of the NeurIPS 2022 Competitions Track}, publisher={PMLR}, author={Roberts, Nicholas and Guo, Samuel and Xu, Cong and Talwalkar, Ameet and Lander, David and Tao, Lvfang and Cai, Linhang and Niu, Shuaicheng and Heng, Jianyu and Qin, Hongyang and et al.}, editor={Ciccone, Marco and Stolovitzky, Gustavo and Albrecht, Jacob}, year={2022}, pages={151–170}, collection={Proceedings of Machine Learning Research} }","mla":"Roberts, Nicholas, et al. “AutoML Decathlon: Diverse Tasks, Modern Methods, and Efficiency at Scale.” <i>Proceedings of the NeurIPS 2022 Competitions Track</i>, edited by Marco Ciccone et al., vol. 220, PMLR, 2022, pp. 151–170.","apa":"Roberts, N., Guo, S., Xu, C., Talwalkar, A., Lander, D., Tao, L., Cai, L., Niu, S., Heng, J., Qin, H., Deng, M., Hog, J., Pfefferle, A., Ammanaghatta Shivakumar, S., Krishnakumar, A., Wang, Y., Sukthanker, R., Hutter, F., Hasanaj, E., … Sparks, E. (2022). AutoML Decathlon: Diverse Tasks, Modern Methods, and Efficiency at Scale. In M. Ciccone, G. Stolovitzky, &#38; J. Albrecht (Eds.), <i>Proceedings of the NeurIPS 2022 Competitions Track</i> (Vol. 220, pp. 151–170). PMLR.","ama":"Roberts N, Guo S, Xu C, et al. AutoML Decathlon: Diverse Tasks, Modern Methods, and Efficiency at Scale. In: Ciccone M, Stolovitzky G, Albrecht J, eds. <i>Proceedings of the NeurIPS 2022 Competitions Track</i>. Vol 220. Proceedings of Machine Learning Research. PMLR; 2022:151–170.","ieee":"N. Roberts <i>et al.</i>, “AutoML Decathlon: Diverse Tasks, Modern Methods, and Efficiency at Scale,” in <i>Proceedings of the NeurIPS 2022 Competitions Track</i>, 2022, vol. 220, pp. 151–170.","chicago":"Roberts, Nicholas, Samuel Guo, Cong Xu, Ameet Talwalkar, David Lander, Lvfang Tao, Linhang Cai, et al. “AutoML Decathlon: Diverse Tasks, Modern Methods, and Efficiency at Scale.” In <i>Proceedings of the NeurIPS 2022 Competitions Track</i>, edited by Marco Ciccone, Gustavo Stolovitzky, and Jacob Albrecht, 220:151–170. Proceedings of Machine Learning Research. PMLR, 2022."},"_id":"62072","user_id":"124732","series_title":"Proceedings of Machine Learning Research","language":[{"iso":"eng"}],"extern":"1","publication":"Proceedings of the NeurIPS 2022 Competitions Track","type":"conference","abstract":[{"text":"The vision of Automated Machine Learning (AutoML) is to produce high performing ML pipelines that require very little human involvement or domain expertise to use. Competitions and benchmarks have been critical tools for accelerating progress in AutoML. However, much of the prior work on AutoML competitions has focused on well-studied domains in machine learning such as vision and language—these are domains which have benefited from several years of ML pipeline design by domain experts, which brings the usage of AutoML into question in the first place. Recently, AutoML for diverse tasks has emerged as an important research area that aims to bring AutoML to the domains where it can have the most impact: the long tail of ML tasks <em>beyond vision and language</em>. We present a retrospective report of the AutoML Decathlon—an AutoML for diverse tasks competition hosted at NeurIPS 2022. The AutoML Decathlon presented participants with a set of 10 machine learning tasks that are diverse along several axes: domain, input dimension, output dimension, output type, objective function, and scale. Participants were tasked with developing AutoML methods that performed well on a <em>separate</em> set of 10 hidden diverse test tasks within a certain time budget, so as to discourage overfitting to the initial set of tasks and to encourage efficiency. In this report, we outline the details of the competition, discuss the top-5 submissions, analyze the results, and compare top submissions to additional state-of-the-art baselines designed specifically for diverse tasks. We conclude that the combination of existing efficient AutoML techniques with modern advancements in ML such as large-scale transfer learning, modern architectures, and differentiable Neural Architecture Search (NAS) is a promising direction for AutoML for diverse tasks.","lang":"eng"}],"editor":[{"first_name":"Marco","full_name":"Ciccone, Marco","last_name":"Ciccone"},{"last_name":"Stolovitzky","full_name":"Stolovitzky, Gustavo","first_name":"Gustavo"},{"last_name":"Albrecht","full_name":"Albrecht, Jacob","first_name":"Jacob"}],"status":"public"},{"issue":"3","publication_status":"published","publication_identifier":{"issn":["1439-9598","1868-0054"]},"citation":{"mla":"Andexer, Jennifer N., et al. “Trendbericht Organische Chemie 2022.” <i>Nachrichten Aus Der Chemie</i>, vol. 70, no. 3, Wiley, 2022, pp. 42–69, doi:<a href=\"https://doi.org/10.1002/nadc.20224122453\">10.1002/nadc.20224122453</a>.","bibtex":"@article{Andexer_Beifuss_Brasholz_Breinbauer_Breugst_Dumele_Ernst_Ganardi_Giese_Gulder_et al._2022, title={Trendbericht Organische Chemie 2022}, volume={70}, DOI={<a href=\"https://doi.org/10.1002/nadc.20224122453\">10.1002/nadc.20224122453</a>}, number={3}, journal={Nachrichten aus der Chemie}, publisher={Wiley}, author={Andexer, Jennifer N. and Beifuss, Uwe and Brasholz, Malte and Breinbauer, Rolf and Breugst, Martin and Dumele, Oliver and Ernst, Martin and Ganardi, Ruth and Giese, Michael and Gulder, Tobias A. M. and et al.}, year={2022}, pages={42–69} }","short":"J.N. Andexer, U. Beifuss, M. Brasholz, R. Breinbauer, M. Breugst, O. Dumele, M. Ernst, R. Ganardi, M. Giese, T.A.M. Gulder, W. Hüttel, S. Kath‐Schorr, K. Körber, M. Kordes, T. Lindel, C. Mück‐Lichtenfeld, J. Niemeyer, R. Pfau, F. Pfrengle, J. Pietruszka, J.L. Röckl, N. Schaschke, H. Sebode, M.O. Senge, B.F. Straub, J. Teichert, S.R. Waldvogel, T. Werner, C. Winter, Nachrichten Aus Der Chemie 70 (2022) 42–69.","apa":"Andexer, J. N., Beifuss, U., Brasholz, M., Breinbauer, R., Breugst, M., Dumele, O., Ernst, M., Ganardi, R., Giese, M., Gulder, T. A. M., Hüttel, W., Kath‐Schorr, S., Körber, K., Kordes, M., Lindel, T., Mück‐Lichtenfeld, C., Niemeyer, J., Pfau, R., Pfrengle, F., … Winter, C. (2022). Trendbericht Organische Chemie 2022. <i>Nachrichten Aus Der Chemie</i>, <i>70</i>(3), 42–69. <a href=\"https://doi.org/10.1002/nadc.20224122453\">https://doi.org/10.1002/nadc.20224122453</a>","ama":"Andexer JN, Beifuss U, Brasholz M, et al. Trendbericht Organische Chemie 2022. <i>Nachrichten aus der Chemie</i>. 2022;70(3):42-69. doi:<a href=\"https://doi.org/10.1002/nadc.20224122453\">10.1002/nadc.20224122453</a>","ieee":"J. N. Andexer <i>et al.</i>, “Trendbericht Organische Chemie 2022,” <i>Nachrichten aus der Chemie</i>, vol. 70, no. 3, pp. 42–69, 2022, doi: <a href=\"https://doi.org/10.1002/nadc.20224122453\">10.1002/nadc.20224122453</a>.","chicago":"Andexer, Jennifer N., Uwe Beifuss, Malte Brasholz, Rolf Breinbauer, Martin Breugst, Oliver Dumele, Martin Ernst, et al. “Trendbericht Organische Chemie 2022.” <i>Nachrichten Aus Der Chemie</i> 70, no. 3 (2022): 42–69. <a href=\"https://doi.org/10.1002/nadc.20224122453\">https://doi.org/10.1002/nadc.20224122453</a>."},"page":"42-69","intvolume":"        70","year":"2022","author":[{"last_name":"Andexer","full_name":"Andexer, Jennifer N.","first_name":"Jennifer N."},{"last_name":"Beifuss","full_name":"Beifuss, Uwe","first_name":"Uwe"},{"first_name":"Malte","full_name":"Brasholz, Malte","last_name":"Brasholz"},{"last_name":"Breinbauer","full_name":"Breinbauer, Rolf","first_name":"Rolf"},{"full_name":"Breugst, Martin","last_name":"Breugst","first_name":"Martin"},{"first_name":"Oliver","full_name":"Dumele, Oliver","last_name":"Dumele"},{"first_name":"Martin","full_name":"Ernst, Martin","last_name":"Ernst"},{"first_name":"Ruth","full_name":"Ganardi, Ruth","last_name":"Ganardi"},{"last_name":"Giese","full_name":"Giese, Michael","first_name":"Michael"},{"first_name":"Tobias A. M.","last_name":"Gulder","full_name":"Gulder, Tobias A. 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Direct microstructure design and topology optimization can be realized concomitantly during processing by adjusting the geometry, the material composition, and the solidification behavior of the material considered. However, when complex specific requirements have to be met, a targeted part design is highly challenging. In the field of biodegradable implant surgery, a cytocompatible material of an application-adapted shape has to be characterized by a specific degradation behavior and reliably predictable mechanical properties. For instance, small amounts of oxides can have a significant effect on microstructural development, thus likewise affecting the strength and corrosion behavior of the processed material. In the present study, biocompatible pure Fe was processed using electron powder bed fusion (E-PBF). Two different modifications of the Fe were processed by incorporating Fe oxide and Ce oxide in different proportions in order to assess their impact on the microstructural evolution, the mechanical response and the corrosion behavior. The quasistatic mechanical and chemical properties were analyzed and correlated with the final microstructural appearance.</jats:p>","lang":"eng"}],"department":[{"_id":"35"},{"_id":"302"},{"_id":"321"}],"user_id":"7266","_id":"62235","language":[{"iso":"eng"}]},{"type":"book","status":"public","user_id":"36964","_id":"61315","language":[{"iso":"ger"}],"publication_status":"published","citation":{"apa":"Heinrichs, U., &#38; Voigt, M. (2022). <i>Die fragmentarischen Wandmalereien aus der Zeit Bischof Stephan Bodekers und Probst Peter von Klitzkes in der spätmittelalterlichen Dombibliothek in Brandenburg an der Havel und ihre Inschriften: Ein monumentaler Zyklus bestehend aus Figurenbildern, Texten und Ornamenten in zwei Bibliotheksräumen</i>. ART-Dok – Publikationsplattform Kunst- und Bildwissenschaften. <a href=\"https://doi.org/10.11588/artdok.00007730\">https://doi.org/10.11588/artdok.00007730</a>","mla":"Heinrichs, Ulrike, and Martina Voigt. <i>Die fragmentarischen Wandmalereien aus der Zeit Bischof Stephan Bodekers und Probst Peter von Klitzkes in der spätmittelalterlichen Dombibliothek in Brandenburg an der Havel und ihre Inschriften: Ein monumentaler Zyklus bestehend aus Figurenbildern, Texten und Ornamenten in zwei Bibliotheksräumen</i>. ART-Dok – Publikationsplattform Kunst- und Bildwissenschaften, 2022, doi:<a href=\"https://doi.org/10.11588/artdok.00007730\">https://doi.org/10.11588/artdok.00007730</a>.","short":"U. Heinrichs, M. 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Heidelberg: ART-Dok – Publikationsplattform Kunst- und Bildwissenschaften, 2022. <a href=\"https://doi.org/10.11588/artdok.00007730\">https://doi.org/10.11588/artdok.00007730</a>.","ama":"Heinrichs U, Voigt M. <i>Die fragmentarischen Wandmalereien aus der Zeit Bischof Stephan Bodekers und Probst Peter von Klitzkes in der spätmittelalterlichen Dombibliothek in Brandenburg an der Havel und ihre Inschriften: Ein monumentaler Zyklus bestehend aus Figurenbildern, Texten und Ornamenten in zwei Bibliotheksräumen</i>. ART-Dok – Publikationsplattform Kunst- und Bildwissenschaften; 2022. doi:<a href=\"https://doi.org/10.11588/artdok.00007730\">https://doi.org/10.11588/artdok.00007730</a>"},"page":"261","year":"2022","place":"Heidelberg","date_created":"2025-09-17T09:38:47Z","author":[{"last_name":"Heinrichs","id":"36964","full_name":"Heinrichs, Ulrike","first_name":"Ulrike"},{"first_name":"Martina ","full_name":"Voigt, Martina ","last_name":"Voigt"}],"oa":"1","publisher":"ART-Dok – Publikationsplattform Kunst- und Bildwissenschaften","date_updated":"2025-11-18T17:45:39Z","main_file_link":[{"url":"https://archiv.ub.uni-heidelberg.de/artdok/7730/1/Heinrichs_Voigt_Die_fragmentarischen_Wandmalereien_aus_der_Zeit_Bischof_Stephan_Bodekers_und_Propst_Peter_von_Klitzkes_2022.pdf","open_access":"1"}],"doi":"https://doi.org/10.11588/artdok.00007730","title":"Die fragmentarischen Wandmalereien aus der Zeit Bischof Stephan Bodekers und Probst Peter von Klitzkes in der spätmittelalterlichen Dombibliothek in Brandenburg an der Havel und ihre Inschriften: Ein monumentaler Zyklus bestehend aus Figurenbildern, Texten und Ornamenten in zwei Bibliotheksräumen"},{"language":[{"iso":"eng"}],"user_id":"94584","_id":"58579","status":"public","publication":"tà katoptrizómena – Magazin für Kunst | Kultur | Theologie | Ästhetik","type":"review","title":"Rezension zu: „The Language of Colour in the Bible. Embodied Colour Terms Related to Green”","volume":139,"author":[{"last_name":"Bergmann","full_name":"Bergmann, Claudia Dorit","id":"94584","first_name":"Claudia Dorit"}],"date_created":"2025-02-11T15:52:01Z","date_updated":"2025-11-20T16:36:44Z","publisher":"De Gruyter","intvolume":"       139","citation":{"ieee":"C. D. Bergmann, “Rezension zu: „The Language of Colour in the Bible. Embodied Colour Terms Related to Green”,” <i>tà katoptrizómena – Magazin für Kunst | Kultur | Theologie | Ästhetik</i>, vol. 139. De Gruyter, 2022.","chicago":"Bergmann, Claudia Dorit. “Rezension Zu: „The Language of Colour in the Bible. Embodied Colour Terms Related to Green”.” <i>Tà Katoptrizómena – Magazin Für Kunst | Kultur | Theologie | Ästhetik</i>. De Gruyter, 2022.","ama":"Bergmann CD. Rezension zu: „The Language of Colour in the Bible. Embodied Colour Terms Related to Green”. <i>tà katoptrizómena – Magazin für Kunst | Kultur | Theologie | Ästhetik</i>. 2022;139.","bibtex":"@article{Bergmann_2022, title={Rezension zu: „The Language of Colour in the Bible. Embodied Colour Terms Related to Green”}, volume={139}, journal={tà katoptrizómena – Magazin für Kunst | Kultur | Theologie | Ästhetik}, publisher={De Gruyter}, author={Bergmann, Claudia Dorit}, year={2022} }","mla":"Bergmann, Claudia Dorit. “Rezension Zu: „The Language of Colour in the Bible. Embodied Colour Terms Related to Green”.” <i>Tà Katoptrizómena – Magazin Für Kunst | Kultur | Theologie | Ästhetik</i>, vol. 139, De Gruyter, 2022.","short":"C.D. Bergmann, Tà Katoptrizómena – Magazin Für Kunst | Kultur | Theologie | Ästhetik 139 (2022).","apa":"Bergmann, C. D. (2022). Rezension zu: „The Language of Colour in the Bible. Embodied Colour Terms Related to Green”. In <i>tà katoptrizómena – Magazin für Kunst | Kultur | Theologie | Ästhetik</i> (Vol. 139). De Gruyter."},"year":"2022","related_material":{"link":[{"relation":"confirmation","url":"https://www.theomag.de/139/cdb1.html"}]}}]
