[{"volume":9,"user_id":"16199","_id":"43202","publisher":"Elsevier","page":"328-336","status":"public","citation":{"apa":"Meier, T., Reichelt, M., &#38; Walther, A. (2011). Calculus-based optimization of the electron dynamics in nanostructures. <i>Photonics and Nanostructures - Fundamentals and Applications</i>, <i>9</i>(4), 328–336. <a href=\"https://doi.org/10.1016/j.photonics.2011.03.006\">https://doi.org/10.1016/j.photonics.2011.03.006</a>","ieee":"T. Meier, M. Reichelt, and A. Walther, “Calculus-based optimization of the electron dynamics in nanostructures,” <i>Photonics and Nanostructures - Fundamentals and Applications</i>, vol. 9, no. 4, pp. 328–336, 2011, doi: <a href=\"https://doi.org/10.1016/j.photonics.2011.03.006\">10.1016/j.photonics.2011.03.006</a>.","chicago":"Meier, Torsten, Matthias Reichelt, and A. Walther. “Calculus-Based Optimization of the Electron Dynamics in Nanostructures.” <i>Photonics and Nanostructures - Fundamentals and Applications</i> 9, no. 4 (2011): 328–36. <a href=\"https://doi.org/10.1016/j.photonics.2011.03.006\">https://doi.org/10.1016/j.photonics.2011.03.006</a>.","short":"T. Meier, M. Reichelt, A. Walther, Photonics and Nanostructures - Fundamentals and Applications 9 (2011) 328–336.","mla":"Meier, Torsten, et al. “Calculus-Based Optimization of the Electron Dynamics in Nanostructures.” <i>Photonics and Nanostructures - Fundamentals and Applications</i>, vol. 9, no. 4, Elsevier, 2011, pp. 328–36, doi:<a href=\"https://doi.org/10.1016/j.photonics.2011.03.006\">10.1016/j.photonics.2011.03.006</a>.","ama":"Meier T, Reichelt M, Walther A. Calculus-based optimization of the electron dynamics in nanostructures. <i>Photonics and Nanostructures - Fundamentals and Applications</i>. 2011;9(4):328-336. doi:<a href=\"https://doi.org/10.1016/j.photonics.2011.03.006\">10.1016/j.photonics.2011.03.006</a>","bibtex":"@article{Meier_Reichelt_Walther_2011, title={Calculus-based optimization of the electron dynamics in nanostructures}, volume={9}, DOI={<a href=\"https://doi.org/10.1016/j.photonics.2011.03.006\">10.1016/j.photonics.2011.03.006</a>}, number={4}, journal={Photonics and Nanostructures - Fundamentals and Applications}, publisher={Elsevier}, author={Meier, Torsten and Reichelt, Matthias and Walther, A.}, year={2011}, pages={328–336} }"},"doi":"10.1016/j.photonics.2011.03.006","language":[{"iso":"eng"}],"intvolume":"         9","date_updated":"2025-12-16T16:49:08Z","publication_status":"published","author":[{"id":"344","last_name":"Meier","orcid":"0000-0001-8864-2072","first_name":"Torsten","full_name":"Meier, Torsten"},{"first_name":"Matthias","last_name":"Reichelt","full_name":"Reichelt, Matthias","id":"138"},{"first_name":"A.","last_name":"Walther","full_name":"Walther, A."}],"year":"2011","title":"Calculus-based optimization of the electron dynamics in nanostructures","department":[{"_id":"293"},{"_id":"35"},{"_id":"15"},{"_id":"170"},{"_id":"230"}],"type":"journal_article","date_created":"2023-03-29T21:25:40Z","abstract":[{"text":"For numerous applications, the computation and provision of exact derivative information plays an important role for optimizing the considered system. This paper introduces the technique of algorithmic differentiation, a method to compute derivatives of arbitrary order within working precision. This derivative information will be combined with a calculus-based optimization algorithm to optimize a non-trivially shaped laser pulse which coherently steers the electron dynamics in a semiconductor quantum wire. Numerical results illustrating the cost for the derivative computation and the optimization process are presented and discussed.","lang":"eng"}],"publication":"Photonics and Nanostructures - Fundamentals and Applications","issue":"4"},{"date_created":"2018-03-23T12:29:42Z","type":"journal_article","department":[{"_id":"15"},{"_id":"230"}],"issue":"6","publication":"Nano Letters","citation":{"ieee":"Y. Liu, T. Zentgraf, G. Bartal, and X. Zhang, “Transformational Plasmon Optics,” <i>Nano Letters</i>, vol. 10, no. 6, pp. 1991–1997, 2010.","apa":"Liu, Y., Zentgraf, T., Bartal, G., &#38; Zhang, X. (2010). Transformational Plasmon Optics. <i>Nano Letters</i>, <i>10</i>(6), 1991–1997. <a href=\"https://doi.org/10.1021/nl1008019\">https://doi.org/10.1021/nl1008019</a>","short":"Y. Liu, T. Zentgraf, G. Bartal, X. Zhang, Nano Letters 10 (2010) 1991–1997.","chicago":"Liu, Yongmin, Thomas Zentgraf, Guy Bartal, and Xiang Zhang. “Transformational Plasmon Optics.” <i>Nano Letters</i> 10, no. 6 (2010): 1991–97. <a href=\"https://doi.org/10.1021/nl1008019\">https://doi.org/10.1021/nl1008019</a>.","mla":"Liu, Yongmin, et al. “Transformational Plasmon Optics.” <i>Nano Letters</i>, vol. 10, no. 6, American Chemical Society (ACS), 2010, pp. 1991–97, doi:<a href=\"https://doi.org/10.1021/nl1008019\">10.1021/nl1008019</a>.","bibtex":"@article{Liu_Zentgraf_Bartal_Zhang_2010, title={Transformational Plasmon Optics}, volume={10}, DOI={<a href=\"https://doi.org/10.1021/nl1008019\">10.1021/nl1008019</a>}, number={6}, journal={Nano Letters}, publisher={American Chemical Society (ACS)}, author={Liu, Yongmin and Zentgraf, Thomas and Bartal, Guy and Zhang, Xiang}, year={2010}, pages={1991–1997} }","ama":"Liu Y, Zentgraf T, Bartal G, Zhang X. Transformational Plasmon Optics. <i>Nano Letters</i>. 2010;10(6):1991-1997. doi:<a href=\"https://doi.org/10.1021/nl1008019\">10.1021/nl1008019</a>"},"page":"1991-1997","_id":"1729","publisher":"American Chemical Society (ACS)","user_id":"30525","doi":"10.1021/nl1008019","volume":10,"title":"Transformational Plasmon Optics","year":"2010","status":"public","publication_identifier":{"issn":["1530-6984","1530-6992"]},"author":[{"last_name":"Liu","first_name":"Yongmin","full_name":"Liu, Yongmin"},{"id":"30525","full_name":"Zentgraf, Thomas","last_name":"Zentgraf","orcid":"0000-0002-8662-1101","first_name":"Thomas"},{"first_name":"Guy","last_name":"Bartal","full_name":"Bartal, Guy"},{"full_name":"Zhang, Xiang","last_name":"Zhang","first_name":"Xiang"}],"publication_status":"published","date_updated":"2022-01-06T06:53:07Z","intvolume":"        10"},{"date_created":"2018-03-23T12:30:15Z","department":[{"_id":"15"},{"_id":"230"}],"type":"journal_article","citation":{"chicago":"Liu, Ming, Thomas Zentgraf, Yongmin Liu, Guy Bartal, and Xiang Zhang. “Light-Driven Nanoscale Plasmonic Motors.” <i>Nature Nanotechnology</i> 5, no. 8 (2010): 570–73. <a href=\"https://doi.org/10.1038/nnano.2010.128\">https://doi.org/10.1038/nnano.2010.128</a>.","short":"M. Liu, T. Zentgraf, Y. Liu, G. Bartal, X. Zhang, Nature Nanotechnology 5 (2010) 570–573.","apa":"Liu, M., Zentgraf, T., Liu, Y., Bartal, G., &#38; Zhang, X. (2010). Light-driven nanoscale plasmonic motors. <i>Nature Nanotechnology</i>, <i>5</i>(8), 570–573. <a href=\"https://doi.org/10.1038/nnano.2010.128\">https://doi.org/10.1038/nnano.2010.128</a>","ieee":"M. Liu, T. Zentgraf, Y. Liu, G. Bartal, and X. Zhang, “Light-driven nanoscale plasmonic motors,” <i>Nature Nanotechnology</i>, vol. 5, no. 8, pp. 570–573, 2010.","ama":"Liu M, Zentgraf T, Liu Y, Bartal G, Zhang X. Light-driven nanoscale plasmonic motors. <i>Nature Nanotechnology</i>. 2010;5(8):570-573. doi:<a href=\"https://doi.org/10.1038/nnano.2010.128\">10.1038/nnano.2010.128</a>","bibtex":"@article{Liu_Zentgraf_Liu_Bartal_Zhang_2010, title={Light-driven nanoscale plasmonic motors}, volume={5}, DOI={<a href=\"https://doi.org/10.1038/nnano.2010.128\">10.1038/nnano.2010.128</a>}, number={8}, journal={Nature Nanotechnology}, publisher={Springer Nature}, author={Liu, Ming and Zentgraf, Thomas and Liu, Yongmin and Bartal, Guy and Zhang, Xiang}, year={2010}, pages={570–573} }","mla":"Liu, Ming, et al. “Light-Driven Nanoscale Plasmonic Motors.” <i>Nature Nanotechnology</i>, vol. 5, no. 8, Springer Nature, 2010, pp. 570–73, doi:<a href=\"https://doi.org/10.1038/nnano.2010.128\">10.1038/nnano.2010.128</a>."},"issue":"8","publication":"Nature Nanotechnology","_id":"1730","publisher":"Springer Nature","page":"570-573","volume":5,"doi":"10.1038/nnano.2010.128","user_id":"30525","publication_identifier":{"issn":["1748-3387","1748-3395"]},"author":[{"first_name":"Ming","last_name":"Liu","full_name":"Liu, Ming"},{"id":"30525","first_name":"Thomas","orcid":"0000-0002-8662-1101","last_name":"Zentgraf","full_name":"Zentgraf, Thomas"},{"full_name":"Liu, Yongmin","last_name":"Liu","first_name":"Yongmin"},{"full_name":"Bartal, Guy","last_name":"Bartal","first_name":"Guy"},{"full_name":"Zhang, Xiang","last_name":"Zhang","first_name":"Xiang"}],"year":"2010","title":"Light-driven nanoscale plasmonic motors","status":"public","intvolume":"         5","date_updated":"2022-01-06T06:53:07Z","publication_status":"published"},{"publication":"Advanced Materials","issue":"23","citation":{"ama":"Zentgraf T, Valentine J, Tapia N, Li J, Zhang X. An Optical “Janus” Device for Integrated Photonics. <i>Advanced Materials</i>. 2010;22(23):2561-2564. doi:<a href=\"https://doi.org/10.1002/adma.200904139\">10.1002/adma.200904139</a>","bibtex":"@article{Zentgraf_Valentine_Tapia_Li_Zhang_2010, title={An Optical “Janus” Device for Integrated Photonics}, volume={22}, DOI={<a href=\"https://doi.org/10.1002/adma.200904139\">10.1002/adma.200904139</a>}, number={23}, journal={Advanced Materials}, publisher={Wiley-Blackwell}, author={Zentgraf, Thomas and Valentine, Jason and Tapia, Nicholas and Li, Jensen and Zhang, Xiang}, year={2010}, pages={2561–2564} }","mla":"Zentgraf, Thomas, et al. “An Optical ‘Janus’ Device for Integrated Photonics.” <i>Advanced Materials</i>, vol. 22, no. 23, Wiley-Blackwell, 2010, pp. 2561–64, doi:<a href=\"https://doi.org/10.1002/adma.200904139\">10.1002/adma.200904139</a>.","chicago":"Zentgraf, Thomas, Jason Valentine, Nicholas Tapia, Jensen Li, and Xiang Zhang. “An Optical ‘Janus’ Device for Integrated Photonics.” <i>Advanced Materials</i> 22, no. 23 (2010): 2561–64. <a href=\"https://doi.org/10.1002/adma.200904139\">https://doi.org/10.1002/adma.200904139</a>.","short":"T. Zentgraf, J. Valentine, N. Tapia, J. Li, X. Zhang, Advanced Materials 22 (2010) 2561–2564.","apa":"Zentgraf, T., Valentine, J., Tapia, N., Li, J., &#38; Zhang, X. (2010). An Optical “Janus” Device for Integrated Photonics. <i>Advanced Materials</i>, <i>22</i>(23), 2561–2564. <a href=\"https://doi.org/10.1002/adma.200904139\">https://doi.org/10.1002/adma.200904139</a>","ieee":"T. Zentgraf, J. Valentine, N. Tapia, J. Li, and X. Zhang, “An Optical ‘Janus’ Device for Integrated Photonics,” <i>Advanced Materials</i>, vol. 22, no. 23, pp. 2561–2564, 2010."},"type":"journal_article","department":[{"_id":"15"},{"_id":"230"}],"date_created":"2018-03-23T12:30:46Z","publication_status":"published","date_updated":"2022-01-06T06:53:07Z","intvolume":"        22","status":"public","year":"2010","title":"An Optical “Janus” Device for Integrated Photonics","publication_identifier":{"issn":["0935-9648","1521-4095"]},"author":[{"last_name":"Zentgraf","first_name":"Thomas","orcid":"0000-0002-8662-1101","full_name":"Zentgraf, Thomas","id":"30525"},{"full_name":"Valentine, Jason","first_name":"Jason","last_name":"Valentine"},{"full_name":"Tapia, Nicholas","first_name":"Nicholas","last_name":"Tapia"},{"full_name":"Li, Jensen","first_name":"Jensen","last_name":"Li"},{"full_name":"Zhang, Xiang","first_name":"Xiang","last_name":"Zhang"}],"user_id":"30525","doi":"10.1002/adma.200904139","volume":22,"page":"2561-2564","publisher":"Wiley-Blackwell","_id":"1731"},{"publisher":"American Chemical Society (ACS)","_id":"1732","page":"2154-2156","volume":132,"user_id":"30525","doi":"10.1021/ja909483w","publication_identifier":{"issn":["0002-7863","1520-5126"]},"author":[{"last_name":"Yim","first_name":"Tae-Jin","full_name":"Yim, Tae-Jin"},{"id":"30525","last_name":"Zentgraf","orcid":"0000-0002-8662-1101","first_name":"Thomas","full_name":"Zentgraf, Thomas"},{"first_name":"Bumki","last_name":"Min","full_name":"Min, Bumki"},{"full_name":"Zhang, Xiang","last_name":"Zhang","first_name":"Xiang"}],"year":"2010","status":"public","title":"All-Liquid Photonic Microcavity Stabilized by Quantum Dots","intvolume":"       132","publication_status":"published","date_updated":"2022-01-06T06:53:07Z","date_created":"2018-03-23T12:31:24Z","department":[{"_id":"15"},{"_id":"230"}],"type":"journal_article","citation":{"mla":"Yim, Tae-Jin, et al. “All-Liquid Photonic Microcavity Stabilized by Quantum Dots.” <i>Journal of the American Chemical Society</i>, vol. 132, no. 7, American Chemical Society (ACS), 2010, pp. 2154–56, doi:<a href=\"https://doi.org/10.1021/ja909483w\">10.1021/ja909483w</a>.","ama":"Yim T-J, Zentgraf T, Min B, Zhang X. All-Liquid Photonic Microcavity Stabilized by Quantum Dots. <i>Journal of the American Chemical Society</i>. 2010;132(7):2154-2156. doi:<a href=\"https://doi.org/10.1021/ja909483w\">10.1021/ja909483w</a>","bibtex":"@article{Yim_Zentgraf_Min_Zhang_2010, title={All-Liquid Photonic Microcavity Stabilized by Quantum Dots}, volume={132}, DOI={<a href=\"https://doi.org/10.1021/ja909483w\">10.1021/ja909483w</a>}, number={7}, journal={Journal of the American Chemical Society}, publisher={American Chemical Society (ACS)}, author={Yim, Tae-Jin and Zentgraf, Thomas and Min, Bumki and Zhang, Xiang}, year={2010}, pages={2154–2156} }","apa":"Yim, T.-J., Zentgraf, T., Min, B., &#38; Zhang, X. (2010). All-Liquid Photonic Microcavity Stabilized by Quantum Dots. <i>Journal of the American Chemical Society</i>, <i>132</i>(7), 2154–2156. <a href=\"https://doi.org/10.1021/ja909483w\">https://doi.org/10.1021/ja909483w</a>","ieee":"T.-J. Yim, T. Zentgraf, B. Min, and X. Zhang, “All-Liquid Photonic Microcavity Stabilized by Quantum Dots,” <i>Journal of the American Chemical Society</i>, vol. 132, no. 7, pp. 2154–2156, 2010.","chicago":"Yim, Tae-Jin, Thomas Zentgraf, Bumki Min, and Xiang Zhang. “All-Liquid Photonic Microcavity Stabilized by Quantum Dots.” <i>Journal of the American Chemical Society</i> 132, no. 7 (2010): 2154–56. <a href=\"https://doi.org/10.1021/ja909483w\">https://doi.org/10.1021/ja909483w</a>.","short":"T.-J. Yim, T. Zentgraf, B. Min, X. Zhang, Journal of the American Chemical Society 132 (2010) 2154–2156."},"publication":"Journal of the American Chemical Society","issue":"7"},{"status":"public","year":"2010","title":"Far-field measurement of ultra-small plasmonic mode volume","author":[{"full_name":"Zhang, Shuang","last_name":"Zhang","first_name":"Shuang"},{"full_name":"Park, Yong-Shik","last_name":"Park","first_name":"Yong-Shik"},{"first_name":"Yongmin","last_name":"Liu","full_name":"Liu, Yongmin"},{"id":"30525","first_name":"Thomas","orcid":"0000-0002-8662-1101","last_name":"Zentgraf","full_name":"Zentgraf, Thomas"},{"full_name":"Zhang, Xiang","first_name":"Xiang","last_name":"Zhang"}],"publication_identifier":{"issn":["1094-4087"]},"publication_status":"published","date_updated":"2022-01-06T06:53:08Z","intvolume":"        18","article_number":"6048","publisher":"The Optical Society","_id":"1733","user_id":"30525","doi":"10.1364/oe.18.006048","volume":18,"issue":"6","publication":"Optics Express","citation":{"apa":"Zhang, S., Park, Y.-S., Liu, Y., Zentgraf, T., &#38; Zhang, X. (2010). Far-field measurement of ultra-small plasmonic mode volume. <i>Optics Express</i>, <i>18</i>(6). <a href=\"https://doi.org/10.1364/oe.18.006048\">https://doi.org/10.1364/oe.18.006048</a>","ieee":"S. Zhang, Y.-S. Park, Y. Liu, T. Zentgraf, and X. Zhang, “Far-field measurement of ultra-small plasmonic mode volume,” <i>Optics Express</i>, vol. 18, no. 6, 2010.","short":"S. Zhang, Y.-S. Park, Y. Liu, T. Zentgraf, X. Zhang, Optics Express 18 (2010).","chicago":"Zhang, Shuang, Yong-Shik Park, Yongmin Liu, Thomas Zentgraf, and Xiang Zhang. “Far-Field Measurement of Ultra-Small Plasmonic Mode Volume.” <i>Optics Express</i> 18, no. 6 (2010). <a href=\"https://doi.org/10.1364/oe.18.006048\">https://doi.org/10.1364/oe.18.006048</a>.","mla":"Zhang, Shuang, et al. “Far-Field Measurement of Ultra-Small Plasmonic Mode Volume.” <i>Optics Express</i>, vol. 18, no. 6, 6048, The Optical Society, 2010, doi:<a href=\"https://doi.org/10.1364/oe.18.006048\">10.1364/oe.18.006048</a>.","ama":"Zhang S, Park Y-S, Liu Y, Zentgraf T, Zhang X. Far-field measurement of ultra-small plasmonic mode volume. <i>Optics Express</i>. 2010;18(6). doi:<a href=\"https://doi.org/10.1364/oe.18.006048\">10.1364/oe.18.006048</a>","bibtex":"@article{Zhang_Park_Liu_Zentgraf_Zhang_2010, title={Far-field measurement of ultra-small plasmonic mode volume}, volume={18}, DOI={<a href=\"https://doi.org/10.1364/oe.18.006048\">10.1364/oe.18.006048</a>}, number={66048}, journal={Optics Express}, publisher={The Optical Society}, author={Zhang, Shuang and Park, Yong-Shik and Liu, Yongmin and Zentgraf, Thomas and Zhang, Xiang}, year={2010} }"},"date_created":"2018-03-23T12:32:23Z","type":"journal_article","department":[{"_id":"15"},{"_id":"230"}]},{"date_created":"2019-02-14T10:21:54Z","type":"journal_article","department":[{"_id":"15"},{"_id":"230"}],"issue":"1","publication":"Journal of Crystal Growth","language":[{"iso":"eng"}],"doi":"10.1016/j.jcrysgro.2010.11.060","title":"(100) GaAs/AlxGa1−xAs heterostructures for Zeeman spin splitting studies of hole quantum wires","year":"2010","author":[{"full_name":"Trunov, K.","first_name":"K.","last_name":"Trunov"},{"id":"37763","full_name":"Reuter, Dirk","last_name":"Reuter","first_name":"Dirk"},{"first_name":"A.","last_name":"Ludwig","full_name":"Ludwig, A."},{"last_name":"Chen","first_name":"J.C.H.","full_name":"Chen, J.C.H."},{"last_name":"Klochan","first_name":"O.","full_name":"Klochan, O."},{"full_name":"Micolich, A.P.","last_name":"Micolich","first_name":"A.P."},{"full_name":"Hamilton, A.R.","last_name":"Hamilton","first_name":"A.R."},{"full_name":"Wieck, A.D.","last_name":"Wieck","first_name":"A.D."}],"publication_identifier":{"issn":["0022-0248"]},"publication_status":"published","date_updated":"2022-01-06T07:03:45Z","intvolume":"       323","citation":{"short":"K. Trunov, D. Reuter, A. Ludwig, J.C.H. Chen, O. Klochan, A.P. Micolich, A.R. Hamilton, A.D. Wieck, Journal of Crystal Growth 323 (2010) 48–51.","chicago":"Trunov, K., Dirk Reuter, A. Ludwig, J.C.H. Chen, O. Klochan, A.P. Micolich, A.R. Hamilton, and A.D. Wieck. “(100) GaAs/AlxGa1−xAs Heterostructures for Zeeman Spin Splitting Studies of Hole Quantum Wires.” <i>Journal of Crystal Growth</i> 323, no. 1 (2010): 48–51. <a href=\"https://doi.org/10.1016/j.jcrysgro.2010.11.060\">https://doi.org/10.1016/j.jcrysgro.2010.11.060</a>.","apa":"Trunov, K., Reuter, D., Ludwig, A., Chen, J. C. H., Klochan, O., Micolich, A. P., … Wieck, A. D. (2010). (100) GaAs/AlxGa1−xAs heterostructures for Zeeman spin splitting studies of hole quantum wires. <i>Journal of Crystal Growth</i>, <i>323</i>(1), 48–51. <a href=\"https://doi.org/10.1016/j.jcrysgro.2010.11.060\">https://doi.org/10.1016/j.jcrysgro.2010.11.060</a>","ieee":"K. Trunov <i>et al.</i>, “(100) GaAs/AlxGa1−xAs heterostructures for Zeeman spin splitting studies of hole quantum wires,” <i>Journal of Crystal Growth</i>, vol. 323, no. 1, pp. 48–51, 2010.","ama":"Trunov K, Reuter D, Ludwig A, et al. (100) GaAs/AlxGa1−xAs heterostructures for Zeeman spin splitting studies of hole quantum wires. <i>Journal of Crystal Growth</i>. 2010;323(1):48-51. doi:<a href=\"https://doi.org/10.1016/j.jcrysgro.2010.11.060\">10.1016/j.jcrysgro.2010.11.060</a>","bibtex":"@article{Trunov_Reuter_Ludwig_Chen_Klochan_Micolich_Hamilton_Wieck_2010, title={(100) GaAs/AlxGa1−xAs heterostructures for Zeeman spin splitting studies of hole quantum wires}, volume={323}, DOI={<a href=\"https://doi.org/10.1016/j.jcrysgro.2010.11.060\">10.1016/j.jcrysgro.2010.11.060</a>}, number={1}, journal={Journal of Crystal Growth}, publisher={Elsevier BV}, author={Trunov, K. and Reuter, Dirk and Ludwig, A. and Chen, J.C.H. and Klochan, O. and Micolich, A.P. and Hamilton, A.R. and Wieck, A.D.}, year={2010}, pages={48–51} }","mla":"Trunov, K., et al. “(100) GaAs/AlxGa1−xAs Heterostructures for Zeeman Spin Splitting Studies of Hole Quantum Wires.” <i>Journal of Crystal Growth</i>, vol. 323, no. 1, Elsevier BV, 2010, pp. 48–51, doi:<a href=\"https://doi.org/10.1016/j.jcrysgro.2010.11.060\">10.1016/j.jcrysgro.2010.11.060</a>."},"page":"48-51","_id":"7705","publisher":"Elsevier BV","user_id":"42514","volume":323,"status":"public"},{"status":"public","publisher":"Springer Nature","_id":"7972","page":"173-177","volume":6,"user_id":"42514","citation":{"mla":"Giesbers, A. J. M., et al. “Correlation-Induced Single-Flux-Quantum Penetration in Quantum Rings.” <i>Nature Physics</i>, vol. 6, no. 3, Springer Nature, 2010, pp. 173–77, doi:<a href=\"https://doi.org/10.1038/nphys1517\">10.1038/nphys1517</a>.","ama":"Giesbers AJM, Zeitler U, Katsnelson MI, et al. Correlation-induced single-flux-quantum penetration in quantum rings. <i>Nature Physics</i>. 2010;6(3):173-177. doi:<a href=\"https://doi.org/10.1038/nphys1517\">10.1038/nphys1517</a>","bibtex":"@article{Giesbers_Zeitler_Katsnelson_Reuter_Wieck_Biasiol_Sorba_Maan_2010, title={Correlation-induced single-flux-quantum penetration in quantum rings}, volume={6}, DOI={<a href=\"https://doi.org/10.1038/nphys1517\">10.1038/nphys1517</a>}, number={3}, journal={Nature Physics}, publisher={Springer Nature}, author={Giesbers, A. J. M. and Zeitler, U. and Katsnelson, M. I. and Reuter, Dirk and Wieck, A. D. and Biasiol, G. and Sorba, L. and Maan, J. C.}, year={2010}, pages={173–177} }","apa":"Giesbers, A. J. 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