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Wieck. “From Localised to Ballistic Excitons in GaAs Quantum Wells.” <i>Acta Physica Polonica A</i>, 2016, 397–402. <a href=\"https://doi.org/10.12693/aphyspola.100.397\">https://doi.org/10.12693/aphyspola.100.397</a>.","mla":"Pulizzi, F., et al. “From Localised to Ballistic Excitons in GaAs Quantum Wells.” <i>Acta Physica Polonica A</i>, 2016, pp. 397–402, doi:<a href=\"https://doi.org/10.12693/aphyspola.100.397\">10.12693/aphyspola.100.397</a>.","ama":"Pulizzi F, Christianen PCM, Maan JC, Eshlaghi S, Reuter D, Wieck AD. From Localised to Ballistic Excitons in GaAs Quantum Wells. <i>Acta Physica Polonica A</i>. 2016:397-402. doi:<a href=\"https://doi.org/10.12693/aphyspola.100.397\">10.12693/aphyspola.100.397</a>","bibtex":"@article{Pulizzi_Christianen_Maan_Eshlaghi_Reuter_Wieck_2016, title={From Localised to Ballistic Excitons in GaAs Quantum Wells}, DOI={<a href=\"https://doi.org/10.12693/aphyspola.100.397\">10.12693/aphyspola.100.397</a>}, journal={Acta Physica Polonica A}, author={Pulizzi, F. and Christianen, P.C.M. and Maan, J.C. and Eshlaghi, S. and Reuter, Dirk and Wieck, A.D.}, year={2016}, pages={397–402} }"},"publication":"Acta Physica Polonica A","date_created":"2019-03-29T11:25:56Z","department":[{"_id":"15"},{"_id":"230"}],"type":"journal_article"},{"date_created":"2019-04-01T07:58:00Z","type":"journal_article","department":[{"_id":"15"},{"_id":"230"}],"publication":"Acta Physica Polonica A","citation":{"ama":"Pulizzi F, Christianen PCM, Maan JC, Eshlaghi S, Reuter D, Wieck AD. From Localised to Ballistic Excitons in GaAs Quantum Wells. <i>Acta Physica Polonica A</i>. 2016:397-402. doi:<a href=\"https://doi.org/10.12693/aphyspola.100.397\">10.12693/aphyspola.100.397</a>","bibtex":"@article{Pulizzi_Christianen_Maan_Eshlaghi_Reuter_Wieck_2016, title={From Localised to Ballistic Excitons in GaAs Quantum Wells}, DOI={<a href=\"https://doi.org/10.12693/aphyspola.100.397\">10.12693/aphyspola.100.397</a>}, journal={Acta Physica Polonica A}, author={Pulizzi, F. and Christianen, P.C.M. and Maan, J.C. and Eshlaghi, S. and Reuter, Dirk and Wieck, A.D.}, year={2016}, pages={397–402} }","mla":"Pulizzi, F., et al. “From Localised to Ballistic Excitons in GaAs Quantum Wells.” <i>Acta Physica Polonica A</i>, 2016, pp. 397–402, doi:<a href=\"https://doi.org/10.12693/aphyspola.100.397\">10.12693/aphyspola.100.397</a>.","chicago":"Pulizzi, F., P.C.M. Christianen, J.C. Maan, S. Eshlaghi, Dirk Reuter, and A.D. Wieck. “From Localised to Ballistic Excitons in GaAs Quantum Wells.” <i>Acta Physica Polonica A</i>, 2016, 397–402. <a href=\"https://doi.org/10.12693/aphyspola.100.397\">https://doi.org/10.12693/aphyspola.100.397</a>.","short":"F. Pulizzi, P.C.M. Christianen, J.C. Maan, S. Eshlaghi, D. Reuter, A.D. Wieck, Acta Physica Polonica A (2016) 397–402.","apa":"Pulizzi, F., Christianen, P. C. M., Maan, J. C., Eshlaghi, S., Reuter, D., &#38; Wieck, A. D. (2016). From Localised to Ballistic Excitons in GaAs Quantum Wells. <i>Acta Physica Polonica A</i>, 397–402. <a href=\"https://doi.org/10.12693/aphyspola.100.397\">https://doi.org/10.12693/aphyspola.100.397</a>","ieee":"F. Pulizzi, P. C. M. Christianen, J. C. Maan, S. Eshlaghi, D. Reuter, and A. D. Wieck, “From Localised to Ballistic Excitons in GaAs Quantum Wells,” <i>Acta Physica Polonica A</i>, pp. 397–402, 2016."},"page":"397-402","language":[{"iso":"eng"}],"_id":"8769","user_id":"42514","doi":"10.12693/aphyspola.100.397","status":"public","year":"2016","title":"From Localised to Ballistic Excitons in GaAs Quantum Wells","publication_identifier":{"issn":["0587-4246","1898-794X"]},"author":[{"first_name":"F.","last_name":"Pulizzi","full_name":"Pulizzi, F."},{"last_name":"Christianen","first_name":"P.C.M.","full_name":"Christianen, P.C.M."},{"first_name":"J.C.","last_name":"Maan","full_name":"Maan, J.C."},{"full_name":"Eshlaghi, S.","last_name":"Eshlaghi","first_name":"S."},{"id":"37763","last_name":"Reuter","first_name":"Dirk","full_name":"Reuter, Dirk"},{"first_name":"A.D.","last_name":"Wieck","full_name":"Wieck, A.D."}],"publication_status":"published","date_updated":"2022-01-06T07:04:00Z"},{"abstract":[{"text":"In this work we study the resonant and coherent properties of single InP-based InAs quantum dots, which show an optical emission in the telecom C-band and L-band. High-resolution resonant photocurrent spectroscopy on p–i–n devices reveals narrow linewidths and fully resolved fine structure splittings. We observe Lorentzian line shapes, which allow for the extraction of dephasing times as a function of the applied bias voltage. Coherent ps laser excitation results in pronounced Rabi rotations with increasing pulse area. For π-pulse excitation, we obtain more than 93 % of the theoretically expected photocurrent amplitude. Our results also demonstrate that such state-of-the-art InP-based quantum dots for the telecom band exhibit promising key parameters comparable to well-established InAs/GaAs counterparts.","lang":"eng"}],"issue":"2","publication":"Applied Physics B","type":"journal_article","keyword":["Bias Voltage","Optical Parametric Oscillator","Molecular Beam Epitaxy Growth","Internal Electric Field","Dephasing Time"],"department":[{"_id":"15"},{"_id":"230"},{"_id":"35"}],"date_created":"2018-08-29T08:30:59Z","date_updated":"2022-01-06T07:00:41Z","publication_status":"published","intvolume":"       122","article_type":"original","year":"2016","title":"Coherent photocurrent spectroscopy of single InP-based quantum dots in the telecom band at 1.5 µm","publication_identifier":{"issn":["0946-2171","1432-0649"]},"author":[{"first_name":"S.","last_name":"Gordon","full_name":"Gordon, S."},{"full_name":"Yacob, M.","last_name":"Yacob","first_name":"M."},{"last_name":"Reithmaier","first_name":"J. P.","full_name":"Reithmaier, J. P."},{"full_name":"Benyoucef, M.","first_name":"M.","last_name":"Benyoucef"},{"id":"606","orcid":"0000-0002-5190-0944","first_name":"Artur","last_name":"Zrenner","full_name":"Zrenner, Artur"}],"doi":"10.1007/s00340-015-6279-6","language":[{"iso":"eng"}],"citation":{"mla":"Gordon, S., et al. “Coherent Photocurrent Spectroscopy of Single InP-Based Quantum Dots in the Telecom Band at 1.5 Μm.” <i>Applied Physics B</i>, vol. 122, no. 2, Springer Nature, 2016, doi:<a href=\"https://doi.org/10.1007/s00340-015-6279-6\">10.1007/s00340-015-6279-6</a>.","ama":"Gordon S, Yacob M, Reithmaier JP, Benyoucef M, Zrenner A. Coherent photocurrent spectroscopy of single InP-based quantum dots in the telecom band at 1.5 µm. <i>Applied Physics B</i>. 2016;122(2). doi:<a href=\"https://doi.org/10.1007/s00340-015-6279-6\">10.1007/s00340-015-6279-6</a>","bibtex":"@article{Gordon_Yacob_Reithmaier_Benyoucef_Zrenner_2016, title={Coherent photocurrent spectroscopy of single InP-based quantum dots in the telecom band at 1.5 µm}, volume={122}, DOI={<a href=\"https://doi.org/10.1007/s00340-015-6279-6\">10.1007/s00340-015-6279-6</a>}, number={2}, journal={Applied Physics B}, publisher={Springer Nature}, author={Gordon, S. and Yacob, M. and Reithmaier, J. P. and Benyoucef, M. and Zrenner, Artur}, year={2016} }","apa":"Gordon, S., Yacob, M., Reithmaier, J. P., Benyoucef, M., &#38; Zrenner, A. (2016). Coherent photocurrent spectroscopy of single InP-based quantum dots in the telecom band at 1.5 µm. <i>Applied Physics B</i>, <i>122</i>(2). <a href=\"https://doi.org/10.1007/s00340-015-6279-6\">https://doi.org/10.1007/s00340-015-6279-6</a>","ieee":"S. Gordon, M. Yacob, J. P. Reithmaier, M. Benyoucef, and A. Zrenner, “Coherent photocurrent spectroscopy of single InP-based quantum dots in the telecom band at 1.5 µm,” <i>Applied Physics B</i>, vol. 122, no. 2, 2016.","short":"S. Gordon, M. Yacob, J.P. Reithmaier, M. Benyoucef, A. Zrenner, Applied Physics B 122 (2016).","chicago":"Gordon, S., M. Yacob, J. P. Reithmaier, M. Benyoucef, and Artur Zrenner. “Coherent Photocurrent Spectroscopy of Single InP-Based Quantum Dots in the Telecom Band at 1.5 Μm.” <i>Applied Physics B</i> 122, no. 2 (2016). <a href=\"https://doi.org/10.1007/s00340-015-6279-6\">https://doi.org/10.1007/s00340-015-6279-6</a>."},"status":"public","user_id":"49428","volume":122,"_id":"4244","publisher":"Springer Nature"},{"project":[{"_id":"1","name":"SFB 901"},{"name":"SFB 901 - Project Area C","_id":"4"},{"_id":"14","name":"SFB 901 - Subproject C2"}],"citation":{"bibtex":"@book{Tölke_2016, title={Sicherheit von hybriden FPGA-Systemen in der industriellen Automatisierungstechnik -- Anforderungen und Umsetzung}, publisher={Universität Paderborn}, author={Tölke, Christian}, year={2016} }","ama":"Tölke C. <i>Sicherheit von Hybriden FPGA-Systemen in Der Industriellen Automatisierungstechnik -- Anforderungen Und Umsetzung</i>. Universität Paderborn; 2016.","mla":"Tölke, Christian. <i>Sicherheit von Hybriden FPGA-Systemen in Der Industriellen Automatisierungstechnik -- Anforderungen Und Umsetzung</i>. Universität Paderborn, 2016.","chicago":"Tölke, Christian. <i>Sicherheit von Hybriden FPGA-Systemen in Der Industriellen Automatisierungstechnik -- Anforderungen Und Umsetzung</i>. Universität Paderborn, 2016.","short":"C. Tölke, Sicherheit von Hybriden FPGA-Systemen in Der Industriellen Automatisierungstechnik -- Anforderungen Und Umsetzung, Universität Paderborn, 2016.","ieee":"C. Tölke, <i>Sicherheit von hybriden FPGA-Systemen in der industriellen Automatisierungstechnik -- Anforderungen und Umsetzung</i>. Universität Paderborn, 2016.","apa":"Tölke, C. (2016). <i>Sicherheit von hybriden FPGA-Systemen in der industriellen Automatisierungstechnik -- Anforderungen und Umsetzung</i>. Universität Paderborn."},"supervisor":[{"id":"16153","full_name":"Plessl, Christian","first_name":"Christian","last_name":"Plessl","orcid":"0000-0001-5728-9982"}],"type":"mastersthesis","department":[{"_id":"27"},{"_id":"518"}],"date_created":"2018-11-07T16:10:00Z","date_updated":"2022-01-06T07:01:52Z","year":"2016","title":"Sicherheit von hybriden FPGA-Systemen in der industriellen Automatisierungstechnik -- Anforderungen und Umsetzung","status":"public","author":[{"first_name":"Christian","last_name":"Tölke","full_name":"Tölke, Christian"}],"user_id":"477","_id":"5418","language":[{"iso":"eng"}],"publisher":"Universität Paderborn"},{"date_created":"2018-11-07T16:15:51Z","type":"mastersthesis","department":[{"_id":"27"},{"_id":"518"}],"supervisor":[{"full_name":"Plessl, Christian","orcid":"0000-0001-5728-9982","first_name":"Christian","last_name":"Plessl","id":"16153"}],"citation":{"ama":"Wüllrich G. <i>Dynamic OpenCL Task Scheduling for Energy and Performance in a Heterogeneous Environment</i>. Universität Paderborn; 2016.","bibtex":"@book{Wüllrich_2016, title={Dynamic OpenCL Task Scheduling for Energy and Performance in a Heterogeneous Environment}, publisher={Universität Paderborn}, author={Wüllrich, Gunnar}, year={2016} }","mla":"Wüllrich, Gunnar. <i>Dynamic OpenCL Task Scheduling for Energy and Performance in a Heterogeneous Environment</i>. Universität Paderborn, 2016.","chicago":"Wüllrich, Gunnar. <i>Dynamic OpenCL Task Scheduling for Energy and Performance in a Heterogeneous Environment</i>. Universität Paderborn, 2016.","short":"G. Wüllrich, Dynamic OpenCL Task Scheduling for Energy and Performance in a Heterogeneous Environment, Universität Paderborn, 2016.","apa":"Wüllrich, G. (2016). <i>Dynamic OpenCL Task Scheduling for Energy and Performance in a Heterogeneous Environment</i>. Universität Paderborn.","ieee":"G. Wüllrich, <i>Dynamic OpenCL Task Scheduling for Energy and Performance in a Heterogeneous Environment</i>. Universität Paderborn, 2016."},"project":[{"_id":"1","name":"SFB 901"},{"_id":"4","name":"SFB 901 - Project Area C"},{"name":"SFB 901 - Subproject C2","_id":"14"}],"_id":"5420","publisher":"Universität Paderborn","language":[{"iso":"eng"}],"user_id":"477","year":"2016","title":"Dynamic OpenCL Task Scheduling for Energy and Performance in a Heterogeneous Environment","status":"public","author":[{"last_name":"Wüllrich","first_name":"Gunnar","full_name":"Wüllrich, Gunnar"}],"date_updated":"2022-01-06T07:01:53Z"},{"user_id":"49428","volume":24,"publisher":"The Optical Society","_id":"6533","status":"public","project":[{"_id":"53","name":"TRR 142"},{"name":"TRR 142 - Project Area B","_id":"55"},{"name":"TRR 142 - Subproject B2","_id":"67"}],"citation":{"ieee":"T. Jostmeier <i>et al.</i>, “Thermochromic modulation of surface plasmon polaritons in vanadium dioxide nanocomposites,” <i>Optics Express</i>, vol. 24, no. 15, 2016.","apa":"Jostmeier, T., Mangold, M., Zimmer, J., Karl, H., Krenner, H. J., Ruppert, C., &#38; Betz, M. (2016). Thermochromic modulation of surface plasmon polaritons in vanadium dioxide nanocomposites. <i>Optics Express</i>, <i>24</i>(15). <a href=\"https://doi.org/10.1364/oe.24.017321\">https://doi.org/10.1364/oe.24.017321</a>","chicago":"Jostmeier, Thorben, Moritz Mangold, Johannes Zimmer, Helmut Karl, Hubert J. Krenner, Claudia Ruppert, and Markus Betz. “Thermochromic Modulation of Surface Plasmon Polaritons in Vanadium Dioxide Nanocomposites.” <i>Optics Express</i> 24, no. 15 (2016). <a href=\"https://doi.org/10.1364/oe.24.017321\">https://doi.org/10.1364/oe.24.017321</a>.","short":"T. Jostmeier, M. Mangold, J. Zimmer, H. Karl, H.J. Krenner, C. Ruppert, M. Betz, Optics Express 24 (2016).","mla":"Jostmeier, Thorben, et al. “Thermochromic Modulation of Surface Plasmon Polaritons in Vanadium Dioxide Nanocomposites.” <i>Optics Express</i>, vol. 24, no. 15, 17321, The Optical Society, 2016, doi:<a href=\"https://doi.org/10.1364/oe.24.017321\">10.1364/oe.24.017321</a>.","bibtex":"@article{Jostmeier_Mangold_Zimmer_Karl_Krenner_Ruppert_Betz_2016, title={Thermochromic modulation of surface plasmon polaritons in vanadium dioxide nanocomposites}, volume={24}, DOI={<a href=\"https://doi.org/10.1364/oe.24.017321\">10.1364/oe.24.017321</a>}, number={1517321}, journal={Optics Express}, publisher={The Optical Society}, author={Jostmeier, Thorben and Mangold, Moritz and Zimmer, Johannes and Karl, Helmut and Krenner, Hubert J. and Ruppert, Claudia and Betz, Markus}, year={2016} }","ama":"Jostmeier T, Mangold M, Zimmer J, et al. Thermochromic modulation of surface plasmon polaritons in vanadium dioxide nanocomposites. <i>Optics Express</i>. 2016;24(15). doi:<a href=\"https://doi.org/10.1364/oe.24.017321\">10.1364/oe.24.017321</a>"},"doi":"10.1364/oe.24.017321","article_number":"17321","language":[{"iso":"eng"}],"date_updated":"2022-01-06T07:03:10Z","publication_status":"published","intvolume":"        24","year":"2016","title":"Thermochromic modulation of surface plasmon polaritons in vanadium dioxide nanocomposites","author":[{"full_name":"Jostmeier, Thorben","first_name":"Thorben","last_name":"Jostmeier"},{"full_name":"Mangold, Moritz","first_name":"Moritz","last_name":"Mangold"},{"last_name":"Zimmer","first_name":"Johannes","full_name":"Zimmer, Johannes"},{"full_name":"Karl, Helmut","first_name":"Helmut","last_name":"Karl"},{"full_name":"Krenner, Hubert J.","first_name":"Hubert J.","last_name":"Krenner"},{"last_name":"Ruppert","first_name":"Claudia","full_name":"Ruppert, Claudia"},{"full_name":"Betz, Markus","last_name":"Betz","first_name":"Markus"}],"publication_identifier":{"issn":["1094-4087"]},"type":"journal_article","department":[{"_id":"230"}],"date_created":"2019-01-09T09:34:56Z","abstract":[{"text":"We propose and implement a new concept for thermochromic plasmonic elements. It is based on vanadium dioxide (VO2) nanocrystals located in the near field of surface plasmon polaritons supported by an otherwise unstructured gold thin film. When the VO2 undergoes the metal-insulator phase transition, the coupling conditions for conversion of light into propagating surface plasmon polaritons change markedly. In particular, we realize thermochromic plasmonic grating couplers with substantial switching contrast as well as tunable plasmonic couplers in a Kretschmann configuration. The use of VO2 nanocrystals permits highly repetitive switching and room temperature operation. Simulations based on the actual dielectric function of our VO2 nanocrystals agree well with the experiment.","lang":"eng"}],"issue":"15","publication":"Optics Express"},{"publication":"Nature Communications","issue":"1","abstract":[{"text":"Light is often characterized only by its classical properties, like intensity or coherence. When looking at its quantum properties, described by photon correlations, new information about the state of the matter generating the radiation can be revealed. In particular the difference between independent and entangled emitters, which is at the heart of quantum mechanics, can be made visible in the photon statistics of the emitted light. The well-studied phenomenon of superradiance occurs when quantum–mechanical correlations between the emitters are present. Notwithstanding, superradiance was previously demonstrated only in terms of classical light properties. Here, we provide the missing link between quantum correlations of the active material and photon correlations in the emitted radiation. We use the superradiance of quantum dots in a cavity-quantum electrodynamics laser to show a direct connection between superradiant pulse emission and distinctive changes in the photon correlation function. This directly demonstrates the importance of quantum–mechanical correlations and their transfer between carriers and photons in novel optoelectronic devices.","lang":"eng"}],"date_created":"2019-01-09T09:43:59Z","type":"journal_article","department":[{"_id":"230"}],"year":"2016","title":"Giant photon bunching, superradiant pulse emission and excitation trapping in quantum-dot nanolasers","author":[{"first_name":"Frank","last_name":"Jahnke","full_name":"Jahnke, Frank"},{"full_name":"Gies, Christopher","first_name":"Christopher","last_name":"Gies"},{"first_name":"Marc","last_name":"Aßmann","full_name":"Aßmann, Marc"},{"last_name":"Bayer","first_name":"Manfred","full_name":"Bayer, Manfred"},{"full_name":"Leymann, H. A. M.","first_name":"H. A. M.","last_name":"Leymann"},{"last_name":"Foerster","first_name":"Alexander","full_name":"Foerster, Alexander"},{"first_name":"Jan","last_name":"Wiersig","full_name":"Wiersig, Jan"},{"first_name":"Christian","last_name":"Schneider","full_name":"Schneider, Christian"},{"full_name":"Kamp, Martin","last_name":"Kamp","first_name":"Martin"},{"last_name":"Höfling","first_name":"Sven","full_name":"Höfling, Sven"}],"publication_identifier":{"issn":["2041-1723"]},"date_updated":"2022-01-06T07:03:10Z","publication_status":"published","intvolume":"         7","article_type":"original","language":[{"iso":"eng"}],"doi":"10.1038/ncomms11540","citation":{"mla":"Jahnke, Frank, et al. “Giant Photon Bunching, Superradiant Pulse Emission and Excitation Trapping in Quantum-Dot Nanolasers.” <i>Nature Communications</i>, vol. 7, no. 1, Springer Nature America, Inc, 2016, doi:<a href=\"https://doi.org/10.1038/ncomms11540\">10.1038/ncomms11540</a>.","bibtex":"@article{Jahnke_Gies_Aßmann_Bayer_Leymann_Foerster_Wiersig_Schneider_Kamp_Höfling_2016, title={Giant photon bunching, superradiant pulse emission and excitation trapping in quantum-dot nanolasers}, volume={7}, DOI={<a href=\"https://doi.org/10.1038/ncomms11540\">10.1038/ncomms11540</a>}, number={1}, journal={Nature Communications}, publisher={Springer Nature America, Inc}, author={Jahnke, Frank and Gies, Christopher and Aßmann, Marc and Bayer, Manfred and Leymann, H. A. M. and Foerster, Alexander and Wiersig, Jan and Schneider, Christian and Kamp, Martin and Höfling, Sven}, year={2016} }","ama":"Jahnke F, Gies C, Aßmann M, et al. Giant photon bunching, superradiant pulse emission and excitation trapping in quantum-dot nanolasers. <i>Nature Communications</i>. 2016;7(1). doi:<a href=\"https://doi.org/10.1038/ncomms11540\">10.1038/ncomms11540</a>","ieee":"F. Jahnke <i>et al.</i>, “Giant photon bunching, superradiant pulse emission and excitation trapping in quantum-dot nanolasers,” <i>Nature Communications</i>, vol. 7, no. 1, 2016.","apa":"Jahnke, F., Gies, C., Aßmann, M., Bayer, M., Leymann, H. A. M., Foerster, A., … Höfling, S. (2016). Giant photon bunching, superradiant pulse emission and excitation trapping in quantum-dot nanolasers. <i>Nature Communications</i>, <i>7</i>(1). <a href=\"https://doi.org/10.1038/ncomms11540\">https://doi.org/10.1038/ncomms11540</a>","chicago":"Jahnke, Frank, Christopher Gies, Marc Aßmann, Manfred Bayer, H. A. M. Leymann, Alexander Foerster, Jan Wiersig, Christian Schneider, Martin Kamp, and Sven Höfling. “Giant Photon Bunching, Superradiant Pulse Emission and Excitation Trapping in Quantum-Dot Nanolasers.” <i>Nature Communications</i> 7, no. 1 (2016). <a href=\"https://doi.org/10.1038/ncomms11540\">https://doi.org/10.1038/ncomms11540</a>.","short":"F. Jahnke, C. Gies, M. Aßmann, M. Bayer, H.A.M. Leymann, A. Foerster, J. Wiersig, C. Schneider, M. Kamp, S. Höfling, Nature Communications 7 (2016)."},"project":[{"name":"TRR 142","_id":"53"},{"_id":"56","name":"TRR 142 - Project Area C"},{"name":"TRR 142 - Subproject C1","_id":"71"}],"status":"public","_id":"6539","publisher":"Springer Nature America, Inc","user_id":"49428","volume":7}]
