[{"status":"public","_id":"7221","publisher":"AIP Publishing","volume":106,"user_id":"42514","citation":{"apa":"Chen, J. C. H., Klochan, O., Micolich, A. P., Das Gupta, K., Sfigakis, F., Ritchie, D. A., … Hamilton, A. R. (2015). Fabrication and characterisation of gallium arsenide ambipolar quantum point contacts. <i>Applied Physics Letters</i>, <i>106</i>(18). <a href=\"https://doi.org/10.1063/1.4918934\">https://doi.org/10.1063/1.4918934</a>","ieee":"J. C. H. Chen <i>et al.</i>, “Fabrication and characterisation of gallium arsenide ambipolar quantum point contacts,” <i>Applied Physics Letters</i>, vol. 106, no. 18, 2015.","short":"J.C.H. Chen, O. Klochan, A.P. Micolich, K. Das Gupta, F. Sfigakis, D.A. Ritchie, K. Trunov, D. Reuter, A.D. Wieck, A.R. Hamilton, Applied Physics Letters 106 (2015).","chicago":"Chen, J. C. H., O. Klochan, A. P. Micolich, K. Das Gupta, F. Sfigakis, D. A. Ritchie, K. Trunov, Dirk Reuter, A. D. Wieck, and A. R. Hamilton. “Fabrication and Characterisation of Gallium Arsenide Ambipolar Quantum Point Contacts.” <i>Applied Physics Letters</i> 106, no. 18 (2015). <a href=\"https://doi.org/10.1063/1.4918934\">https://doi.org/10.1063/1.4918934</a>.","mla":"Chen, J. C. H., et al. “Fabrication and Characterisation of Gallium Arsenide Ambipolar Quantum Point Contacts.” <i>Applied Physics Letters</i>, vol. 106, no. 18, 183504, AIP Publishing, 2015, doi:<a href=\"https://doi.org/10.1063/1.4918934\">10.1063/1.4918934</a>.","ama":"Chen JCH, Klochan O, Micolich AP, et al. Fabrication and characterisation of gallium arsenide ambipolar quantum point contacts. <i>Applied Physics Letters</i>. 2015;106(18). doi:<a href=\"https://doi.org/10.1063/1.4918934\">10.1063/1.4918934</a>","bibtex":"@article{Chen_Klochan_Micolich_Das Gupta_Sfigakis_Ritchie_Trunov_Reuter_Wieck_Hamilton_2015, title={Fabrication and characterisation of gallium arsenide ambipolar quantum point contacts}, volume={106}, DOI={<a href=\"https://doi.org/10.1063/1.4918934\">10.1063/1.4918934</a>}, number={18183504}, journal={Applied Physics Letters}, publisher={AIP Publishing}, author={Chen, J. C. H. and Klochan, O. and Micolich, A. P. and Das Gupta, K. and Sfigakis, F. and Ritchie, D. A. and Trunov, K. and Reuter, Dirk and Wieck, A. D. and Hamilton, A. R.}, year={2015} }"},"publication_identifier":{"issn":["0003-6951","1077-3118"]},"author":[{"first_name":"J. C. H.","last_name":"Chen","full_name":"Chen, J. C. H."},{"full_name":"Klochan, O.","last_name":"Klochan","first_name":"O."},{"full_name":"Micolich, A. P.","first_name":"A. P.","last_name":"Micolich"},{"full_name":"Das Gupta, K.","first_name":"K.","last_name":"Das Gupta"},{"last_name":"Sfigakis","first_name":"F.","full_name":"Sfigakis, F."},{"full_name":"Ritchie, D. A.","first_name":"D. A.","last_name":"Ritchie"},{"first_name":"K.","last_name":"Trunov","full_name":"Trunov, K."},{"id":"37763","full_name":"Reuter, Dirk","first_name":"Dirk","last_name":"Reuter"},{"last_name":"Wieck","first_name":"A. D.","full_name":"Wieck, A. D."},{"last_name":"Hamilton","first_name":"A. R.","full_name":"Hamilton, A. R."}],"title":"Fabrication and characterisation of gallium arsenide ambipolar quantum point contacts","year":"2015","intvolume":"       106","date_updated":"2022-01-06T07:03:29Z","publication_status":"published","language":[{"iso":"eng"}],"article_number":"183504","doi":"10.1063/1.4918934","issue":"18","publication":"Applied Physics Letters","date_created":"2019-01-29T11:55:29Z","department":[{"_id":"15"},{"_id":"230"}],"type":"journal_article"},{"author":[{"full_name":"Finke, A.","first_name":"A.","last_name":"Finke"},{"full_name":"Ruth, M.","first_name":"M.","last_name":"Ruth"},{"full_name":"Scholz, S.","first_name":"S.","last_name":"Scholz"},{"full_name":"Ludwig, A.","last_name":"Ludwig","first_name":"A."},{"full_name":"Wieck, A. D.","first_name":"A. D.","last_name":"Wieck"},{"first_name":"Dirk","last_name":"Reuter","full_name":"Reuter, Dirk","id":"37763"},{"last_name":"Pawlis","first_name":"A.","full_name":"Pawlis, A."}],"publication_identifier":{"issn":["1098-0121","1550-235X"]},"status":"public","title":"Extending the spectral range of CdSe/ZnSe quantum wells by strain engineering","year":"2015","intvolume":"        91","publication_status":"published","date_updated":"2022-01-06T07:03:29Z","publisher":"American Physical Society (APS)","_id":"7222","language":[{"iso":"eng"}],"volume":91,"user_id":"42514","doi":"10.1103/physrevb.91.035409","citation":{"ama":"Finke A, Ruth M, Scholz S, et al. Extending the spectral range of CdSe/ZnSe quantum wells by strain engineering. <i>Physical Review B</i>. 2015;91(3). doi:<a href=\"https://doi.org/10.1103/physrevb.91.035409\">10.1103/physrevb.91.035409</a>","short":"A. Finke, M. Ruth, S. Scholz, A. Ludwig, A.D. Wieck, D. Reuter, A. Pawlis, Physical Review B 91 (2015).","chicago":"Finke, A., M. Ruth, S. Scholz, A. Ludwig, A. D. Wieck, Dirk Reuter, and A. Pawlis. “Extending the Spectral Range of CdSe/ZnSe Quantum Wells by Strain Engineering.” <i>Physical Review B</i> 91, no. 3 (2015). <a href=\"https://doi.org/10.1103/physrevb.91.035409\">https://doi.org/10.1103/physrevb.91.035409</a>.","bibtex":"@article{Finke_Ruth_Scholz_Ludwig_Wieck_Reuter_Pawlis_2015, title={Extending the spectral range of CdSe/ZnSe quantum wells by strain engineering}, volume={91}, DOI={<a href=\"https://doi.org/10.1103/physrevb.91.035409\">10.1103/physrevb.91.035409</a>}, number={3}, journal={Physical Review B}, publisher={American Physical Society (APS)}, author={Finke, A. and Ruth, M. and Scholz, S. and Ludwig, A. and Wieck, A. D. and Reuter, Dirk and Pawlis, A.}, year={2015} }","apa":"Finke, A., Ruth, M., Scholz, S., Ludwig, A., Wieck, A. D., Reuter, D., &#38; Pawlis, A. (2015). Extending the spectral range of CdSe/ZnSe quantum wells by strain engineering. <i>Physical Review B</i>, <i>91</i>(3). <a href=\"https://doi.org/10.1103/physrevb.91.035409\">https://doi.org/10.1103/physrevb.91.035409</a>","mla":"Finke, A., et al. “Extending the Spectral Range of CdSe/ZnSe Quantum Wells by Strain Engineering.” <i>Physical Review B</i>, vol. 91, no. 3, American Physical Society (APS), 2015, doi:<a href=\"https://doi.org/10.1103/physrevb.91.035409\">10.1103/physrevb.91.035409</a>.","ieee":"A. Finke <i>et al.</i>, “Extending the spectral range of CdSe/ZnSe quantum wells by strain engineering,” <i>Physical Review B</i>, vol. 91, no. 3, 2015."},"issue":"3","publication":"Physical Review B","date_created":"2019-01-29T11:58:20Z","department":[{"_id":"15"},{"_id":"230"}],"type":"journal_article"},{"department":[{"_id":"15"},{"_id":"230"},{"_id":"35"}],"type":"journal_article","keyword":["excitons","GaAs","InAs","quantum dots","spatially indirect transitions","Stark shift"],"date_created":"2018-08-29T10:03:56Z","abstract":[{"text":"We analyse an InAs/GaAs-based electric ﬁeld tunable single quantum dot diode with a thin tunnelling barrier between a\r\nburied n þ -back contact and a quantum dot layer. In voltage- dependent photoluminescence measurements, we observe rich signatures from spatially direct and indirect transitions from the wetting layer and from a single quantum dot. By analysing the Stark effect, we show that the indirect transitions result from a recombination between conﬁned holes in the wetting or quantum dot layer with electrons from the edge of the Fermi sea in the back contact. Using a 17 nm tunnel barrier which provides comparably weak tunnel coupling allowed us to observe clear signatures of direct and corresponding indirect lines for a series of neutral and positively charged quantum dot states.","lang":"eng"}],"publication":"physica status solidi (b)","issue":"3","doi":"10.1002/pssb.201552591","language":[{"iso":"eng"}],"article_type":"original","intvolume":"       253","publication_status":"published","date_updated":"2022-01-06T07:00:46Z","author":[{"first_name":"Ashish K.","last_name":"Rai","full_name":"Rai, Ashish K."},{"full_name":"Gordon, Simon","last_name":"Gordon","first_name":"Simon"},{"first_name":"Arne","last_name":"Ludwig","full_name":"Ludwig, Arne"},{"first_name":"Andreas D.","last_name":"Wieck","full_name":"Wieck, Andreas D."},{"id":"606","first_name":"Artur","last_name":"Zrenner","orcid":"0000-0002-5190-0944","full_name":"Zrenner, Artur"},{"id":"37763","first_name":"Dirk","last_name":"Reuter","full_name":"Reuter, Dirk"}],"publication_identifier":{"issn":["0370-1972"]},"title":"Spatially indirect transitions in electric field tunable quantum dot diodes","year":"2015","citation":{"chicago":"Rai, Ashish K., Simon Gordon, Arne Ludwig, Andreas D. Wieck, Artur Zrenner, and Dirk Reuter. “Spatially Indirect Transitions in Electric Field Tunable Quantum Dot Diodes.” <i>Physica Status Solidi (B)</i> 253, no. 3 (2015): 437–41. <a href=\"https://doi.org/10.1002/pssb.201552591\">https://doi.org/10.1002/pssb.201552591</a>.","short":"A.K. Rai, S. Gordon, A. Ludwig, A.D. Wieck, A. Zrenner, D. Reuter, Physica Status Solidi (B) 253 (2015) 437–441.","apa":"Rai, A. K., Gordon, S., Ludwig, A., Wieck, A. D., Zrenner, A., &#38; Reuter, D. (2015). Spatially indirect transitions in electric field tunable quantum dot diodes. <i>Physica Status Solidi (B)</i>, <i>253</i>(3), 437–441. <a href=\"https://doi.org/10.1002/pssb.201552591\">https://doi.org/10.1002/pssb.201552591</a>","ieee":"A. K. Rai, S. Gordon, A. Ludwig, A. D. Wieck, A. Zrenner, and D. Reuter, “Spatially indirect transitions in electric field tunable quantum dot diodes,” <i>physica status solidi (b)</i>, vol. 253, no. 3, pp. 437–441, 2015.","ama":"Rai AK, Gordon S, Ludwig A, Wieck AD, Zrenner A, Reuter D. Spatially indirect transitions in electric field tunable quantum dot diodes. <i>physica status solidi (b)</i>. 2015;253(3):437-441. doi:<a href=\"https://doi.org/10.1002/pssb.201552591\">10.1002/pssb.201552591</a>","bibtex":"@article{Rai_Gordon_Ludwig_Wieck_Zrenner_Reuter_2015, title={Spatially indirect transitions in electric field tunable quantum dot diodes}, volume={253}, DOI={<a href=\"https://doi.org/10.1002/pssb.201552591\">10.1002/pssb.201552591</a>}, number={3}, journal={physica status solidi (b)}, publisher={Wiley}, author={Rai, Ashish K. and Gordon, Simon and Ludwig, Arne and Wieck, Andreas D. and Zrenner, Artur and Reuter, Dirk}, year={2015}, pages={437–441} }","mla":"Rai, Ashish K., et al. “Spatially Indirect Transitions in Electric Field Tunable Quantum Dot Diodes.” <i>Physica Status Solidi (B)</i>, vol. 253, no. 3, Wiley, 2015, pp. 437–41, doi:<a href=\"https://doi.org/10.1002/pssb.201552591\">10.1002/pssb.201552591</a>."},"volume":253,"user_id":"42514","publisher":"Wiley","_id":"4276","page":"437-441","status":"public"},{"_id":"4331","publisher":"AIP Publishing","user_id":"49428","volume":107,"status":"public","citation":{"ieee":"W. Quiring, M. Al-Hmoud, A. Rai, D. Reuter, A. D. Wieck, and A. Zrenner, “Photonic crystal cavities with metallic Schottky contacts,” <i>Applied Physics Letters</i>, vol. 107, no. 4, 2015.","apa":"Quiring, W., Al-Hmoud, M., Rai, A., Reuter, D., Wieck, A. D., &#38; Zrenner, A. (2015). Photonic crystal cavities with metallic Schottky contacts. <i>Applied Physics Letters</i>, <i>107</i>(4). <a href=\"https://doi.org/10.1063/1.4928038\">https://doi.org/10.1063/1.4928038</a>","short":"W. Quiring, M. Al-Hmoud, A. Rai, D. Reuter, A.D. Wieck, A. Zrenner, Applied Physics Letters 107 (2015).","chicago":"Quiring, W., M. Al-Hmoud, A. Rai, Dirk Reuter, A. D. Wieck, and Artur Zrenner. “Photonic Crystal Cavities with Metallic Schottky Contacts.” <i>Applied Physics Letters</i> 107, no. 4 (2015). <a href=\"https://doi.org/10.1063/1.4928038\">https://doi.org/10.1063/1.4928038</a>.","mla":"Quiring, W., et al. “Photonic Crystal Cavities with Metallic Schottky Contacts.” <i>Applied Physics Letters</i>, vol. 107, no. 4, 041113, AIP Publishing, 2015, doi:<a href=\"https://doi.org/10.1063/1.4928038\">10.1063/1.4928038</a>.","bibtex":"@article{Quiring_Al-Hmoud_Rai_Reuter_Wieck_Zrenner_2015, title={Photonic crystal cavities with metallic Schottky contacts}, volume={107}, DOI={<a href=\"https://doi.org/10.1063/1.4928038\">10.1063/1.4928038</a>}, number={4041113}, journal={Applied Physics Letters}, publisher={AIP Publishing}, author={Quiring, W. and Al-Hmoud, M. and Rai, A. and Reuter, Dirk and Wieck, A. D. and Zrenner, Artur}, year={2015} }","ama":"Quiring W, Al-Hmoud M, Rai A, Reuter D, Wieck AD, Zrenner A. Photonic crystal cavities with metallic Schottky contacts. <i>Applied Physics Letters</i>. 2015;107(4). doi:<a href=\"https://doi.org/10.1063/1.4928038\">10.1063/1.4928038</a>"},"project":[{"name":"TRR 142","_id":"53"},{"name":"TRR 142 - Project Area C","_id":"56"},{"_id":"74","name":"TRR 142 - Subproject C4"},{"_id":"57","name":"TRR 142 - Project Area Z"},{"name":"TRR 142 - Subproject Z1","_id":"77"}],"article_number":"041113","language":[{"iso":"eng"}],"doi":"10.1063/1.4928038","title":"Photonic crystal cavities with metallic Schottky contacts","year":"2015","author":[{"first_name":"W.","last_name":"Quiring","full_name":"Quiring, W."},{"first_name":"M.","last_name":"Al-Hmoud","full_name":"Al-Hmoud, M."},{"full_name":"Rai, A.","first_name":"A.","last_name":"Rai"},{"first_name":"Dirk","last_name":"Reuter","full_name":"Reuter, Dirk","id":"37763"},{"full_name":"Wieck, A. D.","first_name":"A. D.","last_name":"Wieck"},{"id":"606","full_name":"Zrenner, Artur","last_name":"Zrenner","first_name":"Artur","orcid":"0000-0002-5190-0944"}],"publication_identifier":{"issn":["0003-6951","1077-3118"]},"publication_status":"published","date_updated":"2022-01-06T07:00:56Z","article_type":"original","intvolume":"       107","date_created":"2018-08-30T13:13:46Z","type":"journal_article","department":[{"_id":"15"},{"_id":"230"},{"_id":"35"}],"publication":"Applied Physics Letters","issue":"4","abstract":[{"lang":"eng","text":"We report about the fabrication and analysis of high Q photonic crystal cavities with metallic\r\nSchottky-contacts. The structures are based on GaAs n-i membranes with an InGaAs quantum well\r\nin the i-region and nanostructured low ohmic metal top-gates. They are designed for photocurrent\r\nreadout within the cavity and fast electric manipulations. The cavity structures are characterized by\r\nphotoluminescence and photocurrent spectroscopy under resonant excitation. We find strong cavity\r\nresonances in the photocurrent spectra and surprisingly high Q-factors up to 6500. Temperature dependent\r\nphotocurrent measurements in the region between 4.5K and 310K show an exponential\r\nenhancement of the photocurrent signal and an external quantum efficiency up to 0.26."}]},{"_id":"5413","publisher":"Universität Paderborn","language":[{"iso":"eng"}],"user_id":"477","status":"public","title":"An LLVM Based Toolchain for Transparent Acceleration of Digital Image Processing Applications using FPGA Overlay Architectures","year":"2015","author":[{"full_name":"Funke, Lukas","last_name":"Funke","first_name":"Lukas"}],"date_updated":"2022-01-06T07:01:52Z","date_created":"2018-11-07T15:10:35Z","type":"mastersthesis","department":[{"_id":"27"},{"_id":"518"}],"citation":{"short":"L. Funke, An LLVM Based Toolchain for Transparent Acceleration of Digital Image Processing Applications Using FPGA Overlay Architectures, Universität Paderborn, 2015.","chicago":"Funke, Lukas. <i>An LLVM Based Toolchain for Transparent Acceleration of Digital Image Processing Applications Using FPGA Overlay Architectures</i>. Universität Paderborn, 2015.","ieee":"L. Funke, <i>An LLVM Based Toolchain for Transparent Acceleration of Digital Image Processing Applications using FPGA Overlay Architectures</i>. Universität Paderborn, 2015.","apa":"Funke, L. (2015). <i>An LLVM Based Toolchain for Transparent Acceleration of Digital Image Processing Applications using FPGA Overlay Architectures</i>. Universität Paderborn.","bibtex":"@book{Funke_2015, title={An LLVM Based Toolchain for Transparent Acceleration of Digital Image Processing Applications using FPGA Overlay Architectures}, publisher={Universität Paderborn}, author={Funke, Lukas}, year={2015} }","ama":"Funke L. <i>An LLVM Based Toolchain for Transparent Acceleration of Digital Image Processing Applications Using FPGA Overlay Architectures</i>. Universität Paderborn; 2015.","mla":"Funke, Lukas. <i>An LLVM Based Toolchain for Transparent Acceleration of Digital Image Processing Applications Using FPGA Overlay Architectures</i>. Universität Paderborn, 2015."},"supervisor":[{"first_name":"Christian","orcid":"0000-0001-5728-9982","last_name":"Plessl","full_name":"Plessl, Christian","id":"16153"}],"project":[{"_id":"1","name":"SFB 901"},{"name":"SFB 901 - Project Area C","_id":"4"},{"name":"SFB 901 - Subproject C2","_id":"14"}]},{"date_updated":"2022-01-06T07:01:52Z","status":"public","title":"Instance-Specific Computing in Hard- and Software for Faster Solving of Complex Problems","year":"2015","author":[{"last_name":"Löcke","first_name":"Thomas","full_name":"Löcke, Thomas"}],"user_id":"477","_id":"5416","publisher":"Universität Paderborn","language":[{"iso":"eng"}],"project":[{"name":"SFB 901","_id":"1"},{"_id":"4","name":"SFB 901 - Project Area C"},{"_id":"14","name":"SFB 901 - Subproject C2"}],"supervisor":[{"id":"16153","first_name":"Christian","last_name":"Plessl","orcid":"0000-0001-5728-9982","full_name":"Plessl, Christian"}],"citation":{"ama":"Löcke T. <i>Instance-Specific Computing in Hard- and Software for Faster Solving of Complex Problems</i>. Universität Paderborn; 2015.","short":"T. Löcke, Instance-Specific Computing in Hard- and Software for Faster Solving of Complex Problems, Universität Paderborn, 2015.","chicago":"Löcke, Thomas. <i>Instance-Specific Computing in Hard- and Software for Faster Solving of Complex Problems</i>. Universität Paderborn, 2015.","bibtex":"@book{Löcke_2015, title={Instance-Specific Computing in Hard- and Software for Faster Solving of Complex Problems}, publisher={Universität Paderborn}, author={Löcke, Thomas}, year={2015} }","apa":"Löcke, T. (2015). <i>Instance-Specific Computing in Hard- and Software for Faster Solving of Complex Problems</i>. Universität Paderborn.","mla":"Löcke, Thomas. <i>Instance-Specific Computing in Hard- and Software for Faster Solving of Complex Problems</i>. Universität Paderborn, 2015.","ieee":"T. Löcke, <i>Instance-Specific Computing in Hard- and Software for Faster Solving of Complex Problems</i>. Universität Paderborn, 2015."},"type":"mastersthesis","department":[{"_id":"27"},{"_id":"518"}],"date_created":"2018-11-07T16:06:53Z"},{"date_created":"2018-11-07T16:14:30Z","type":"mastersthesis","department":[{"_id":"27"},{"_id":"518"}],"supervisor":[{"id":"16153","first_name":"Christian","last_name":"Plessl","orcid":"0000-0001-5728-9982","full_name":"Plessl, Christian"}],"citation":{"short":"F. Wallaschek, Accelerating Programmable Logic Controllers with the Use of FPGAs, Universität Paderborn, 2015.","chicago":"Wallaschek, Felix. <i>Accelerating Programmable Logic Controllers with the Use of FPGAs</i>. Universität Paderborn, 2015.","ieee":"F. Wallaschek, <i>Accelerating Programmable Logic Controllers with the use of FPGAs</i>. Universität Paderborn, 2015.","apa":"Wallaschek, F. (2015). <i>Accelerating Programmable Logic Controllers with the use of FPGAs</i>. Universität Paderborn.","bibtex":"@book{Wallaschek_2015, title={Accelerating Programmable Logic Controllers with the use of FPGAs}, publisher={Universität Paderborn}, author={Wallaschek, Felix}, year={2015} }","ama":"Wallaschek F. <i>Accelerating Programmable Logic Controllers with the Use of FPGAs</i>. Universität Paderborn; 2015.","mla":"Wallaschek, Felix. <i>Accelerating Programmable Logic Controllers with the Use of FPGAs</i>. Universität Paderborn, 2015."},"project":[{"_id":"1","name":"SFB 901"},{"_id":"4","name":"SFB 901 - Project Area C"},{"_id":"14","name":"SFB 901 - Subproject C2"}],"_id":"5419","publisher":"Universität Paderborn","language":[{"iso":"eng"}],"user_id":"477","status":"public","title":"Accelerating Programmable Logic Controllers with the use of FPGAs","year":"2015","author":[{"full_name":"Wallaschek, Felix","last_name":"Wallaschek","first_name":"Felix"}],"date_updated":"2022-01-06T07:01:52Z"},{"status":"public","_id":"6520","user_id":"49428","volume":91,"citation":{"mla":"Assmann, Marc, and Manfred Bayer. “Stochastic Pumping of a Polariton Fluid.” <i>PHYSICAL REVIEW A</i>, vol. 91, no. 5, 2015, doi:<a href=\"https://doi.org/10.1103/PhysRevA.91.053835\">10.1103/PhysRevA.91.053835</a>.","ama":"Assmann M, Bayer M. Stochastic pumping of a polariton fluid. <i>PHYSICAL REVIEW A</i>. 2015;91(5). doi:<a href=\"https://doi.org/10.1103/PhysRevA.91.053835\">10.1103/PhysRevA.91.053835</a>","bibtex":"@article{Assmann_Bayer_2015, title={Stochastic pumping of a polariton fluid}, volume={91}, DOI={<a href=\"https://doi.org/10.1103/PhysRevA.91.053835\">10.1103/PhysRevA.91.053835</a>}, number={5}, journal={PHYSICAL REVIEW A}, author={Assmann, Marc and Bayer, Manfred}, year={2015} }","apa":"Assmann, M., &#38; Bayer, M. (2015). Stochastic pumping of a polariton fluid. <i>PHYSICAL REVIEW A</i>, <i>91</i>(5). <a href=\"https://doi.org/10.1103/PhysRevA.91.053835\">https://doi.org/10.1103/PhysRevA.91.053835</a>","ieee":"M. Assmann and M. Bayer, “Stochastic pumping of a polariton fluid,” <i>PHYSICAL REVIEW A</i>, vol. 91, no. 5, 2015.","short":"M. Assmann, M. Bayer, PHYSICAL REVIEW A 91 (2015).","chicago":"Assmann, Marc, and Manfred Bayer. “Stochastic Pumping of a Polariton Fluid.” <i>PHYSICAL REVIEW A</i> 91, no. 5 (2015). <a href=\"https://doi.org/10.1103/PhysRevA.91.053835\">https://doi.org/10.1103/PhysRevA.91.053835</a>."},"project":[{"name":"TRR 142","_id":"53"},{"_id":"54","name":"TRR 142 - Project Area A"},{"name":"TRR 142 - Subproject A4","_id":"61"}],"year":"2015","title":"Stochastic pumping of a polariton fluid","author":[{"first_name":"Marc","last_name":"Assmann","full_name":"Assmann, Marc"},{"full_name":"Bayer, Manfred","last_name":"Bayer","first_name":"Manfred"}],"publication_identifier":{"issn":["1050-2947"]},"date_updated":"2022-01-06T07:03:10Z","intvolume":"        91","article_type":"original","language":[{"iso":"eng"}],"doi":"10.1103/PhysRevA.91.053835","issue":"5","publication":"PHYSICAL REVIEW A","abstract":[{"lang":"eng","text":"We investigate the response of a polariton laser driven slightly off-resonantly using light fields differing from the routinely studied coherent pump sources. The response to driving light fields with thermal and displaced thermal statistics with varying correlation times shows significant differences in the transmitted intensity, its noise, and the position of the nonlinear threshold. We predict that adding more photons on average may actually reduce the transmission through the polariton system."}],"date_created":"2019-01-09T08:53:17Z","type":"journal_article","department":[{"_id":"230"}]},{"status":"public","user_id":"477","volume":92,"publisher":"American Physical Society (APS)","_id":"6522","project":[{"name":"TRR 142","_id":"53"},{"name":"TRR 142 - Project Area B","_id":"55"}],"citation":{"bibtex":"@article{Brunne_Lafrentz_Pavlov_Pisarev_Rodina_Yakovlev_Bayer_2015, title={Electric field effect on optical harmonic generation at the exciton resonances in GaAs}, volume={92}, DOI={<a href=\"https://doi.org/10.1103/physrevb.92.085202\">10.1103/physrevb.92.085202</a>}, number={8}, journal={Physical Review B}, publisher={American Physical Society (APS)}, author={Brunne, D. and Lafrentz, M. and Pavlov, V. V. and Pisarev, R. V. and Rodina, A. V. and Yakovlev, D. R. and Bayer, M.}, year={2015} }","ama":"Brunne D, Lafrentz M, Pavlov VV, et al. Electric field effect on optical harmonic generation at the exciton resonances in GaAs. <i>Physical Review B</i>. 2015;92(8). doi:<a href=\"https://doi.org/10.1103/physrevb.92.085202\">10.1103/physrevb.92.085202</a>","mla":"Brunne, D., et al. “Electric Field Effect on Optical Harmonic Generation at the Exciton Resonances in GaAs.” <i>Physical Review B</i>, vol. 92, no. 8, American Physical Society (APS), 2015, doi:<a href=\"https://doi.org/10.1103/physrevb.92.085202\">10.1103/physrevb.92.085202</a>.","chicago":"Brunne, D., M. Lafrentz, V. V. Pavlov, R. V. Pisarev, A. V. Rodina, D. R. Yakovlev, and M. Bayer. “Electric Field Effect on Optical Harmonic Generation at the Exciton Resonances in GaAs.” <i>Physical Review B</i> 92, no. 8 (2015). <a href=\"https://doi.org/10.1103/physrevb.92.085202\">https://doi.org/10.1103/physrevb.92.085202</a>.","short":"D. Brunne, M. Lafrentz, V.V. Pavlov, R.V. Pisarev, A.V. Rodina, D.R. Yakovlev, M. Bayer, Physical Review B 92 (2015).","ieee":"D. Brunne <i>et al.</i>, “Electric field effect on optical harmonic generation at the exciton resonances in GaAs,” <i>Physical Review B</i>, vol. 92, no. 8, 2015.","apa":"Brunne, D., Lafrentz, M., Pavlov, V. V., Pisarev, R. V., Rodina, A. V., Yakovlev, D. R., &#38; Bayer, M. (2015). Electric field effect on optical harmonic generation at the exciton resonances in GaAs. <i>Physical Review B</i>, <i>92</i>(8). <a href=\"https://doi.org/10.1103/physrevb.92.085202\">https://doi.org/10.1103/physrevb.92.085202</a>"},"date_updated":"2022-01-06T07:03:10Z","publication_status":"published","intvolume":"        92","article_type":"original","title":"Electric field effect on optical harmonic generation at the exciton resonances in GaAs","year":"2015","author":[{"last_name":"Brunne","first_name":"D.","full_name":"Brunne, D."},{"full_name":"Lafrentz, M.","last_name":"Lafrentz","first_name":"M."},{"full_name":"Pavlov, V. V.","last_name":"Pavlov","first_name":"V. V."},{"full_name":"Pisarev, R. V.","first_name":"R. V.","last_name":"Pisarev"},{"full_name":"Rodina, A. V.","first_name":"A. V.","last_name":"Rodina"},{"first_name":"D. R.","last_name":"Yakovlev","full_name":"Yakovlev, D. R."},{"last_name":"Bayer","first_name":"M.","full_name":"Bayer, M."}],"publication_identifier":{"issn":["1098-0121","1550-235X"]},"doi":"10.1103/physrevb.92.085202","language":[{"iso":"eng"}],"abstract":[{"text":"An electric field applied to a semiconductor reduces its crystal symmetry and modifies its electronic structure which is expected to result in changes of the linear and nonlinear response to optical excitation. In GaAs, we observe experimentally strong electric field effects on the optical second (SHG) and third (THG) harmonic generation. The SHG signal for the laser-light k vector parallel to the [001] crystal axis is symmetry forbidden in the electric-dipole approximation, but can be induced by an applied electric field in the vicinity of the 1s exciton energy. Surprisingly, the THG signal, which is allowed in this geometry, is considerably reduced by the electric field. We develop a theory which provides good agreement with the experimental data. In particular, it shows that the optical nonlinearities for the 1s exciton resonance are modified in an electric field by the Stark effect, which mixes the 1s and 2p exciton states of opposite parity. This mixing acts in opposite way on the SHG and THG processes, as it leads to the appearance of forbidden SHG in (001)-oriented GaAs and decreases the crystallographic THG.","lang":"eng"}],"issue":"8","publication":"Physical Review B","type":"journal_article","department":[{"_id":"230"}],"date_created":"2019-01-09T09:00:20Z"},{"citation":{"mla":"Czerniuk, T., et al. “Impact of Nanomechanical Resonances on Lasing from Electrically Pumped Quantum Dot Micropillars.” <i>Applied Physics Letters</i>, vol. 106, no. 4, 041103, AIP Publishing, 2015, doi:<a href=\"https://doi.org/10.1063/1.4906611\">10.1063/1.4906611</a>.","bibtex":"@article{Czerniuk_Tepper_Akimov_Unsleber_Schneider_Kamp_Höfling_Yakovlev_Bayer_2015, title={Impact of nanomechanical resonances on lasing from electrically pumped quantum dot micropillars}, volume={106}, DOI={<a href=\"https://doi.org/10.1063/1.4906611\">10.1063/1.4906611</a>}, number={4041103}, journal={Applied Physics Letters}, publisher={AIP Publishing}, author={Czerniuk, T. and Tepper, J. and Akimov, A. V. and Unsleber, S. and Schneider, C. and Kamp, M. and Höfling, S. and Yakovlev, D. R. and Bayer, M.}, year={2015} }","ama":"Czerniuk T, Tepper J, Akimov AV, et al. Impact of nanomechanical resonances on lasing from electrically pumped quantum dot micropillars. <i>Applied Physics Letters</i>. 2015;106(4). doi:<a href=\"https://doi.org/10.1063/1.4906611\">10.1063/1.4906611</a>","ieee":"T. Czerniuk <i>et al.</i>, “Impact of nanomechanical resonances on lasing from electrically pumped quantum dot micropillars,” <i>Applied Physics Letters</i>, vol. 106, no. 4, 2015.","apa":"Czerniuk, T., Tepper, J., Akimov, A. V., Unsleber, S., Schneider, C., Kamp, M., … Bayer, M. (2015). Impact of nanomechanical resonances on lasing from electrically pumped quantum dot micropillars. <i>Applied Physics Letters</i>, <i>106</i>(4). <a href=\"https://doi.org/10.1063/1.4906611\">https://doi.org/10.1063/1.4906611</a>","short":"T. Czerniuk, J. Tepper, A.V. Akimov, S. Unsleber, C. Schneider, M. Kamp, S. Höfling, D.R. Yakovlev, M. Bayer, Applied Physics Letters 106 (2015).","chicago":"Czerniuk, T., J. Tepper, A. V. Akimov, S. Unsleber, C. Schneider, M. Kamp, S. Höfling, D. R. Yakovlev, and M. Bayer. “Impact of Nanomechanical Resonances on Lasing from Electrically Pumped Quantum Dot Micropillars.” <i>Applied Physics Letters</i> 106, no. 4 (2015). <a href=\"https://doi.org/10.1063/1.4906611\">https://doi.org/10.1063/1.4906611</a>."},"project":[{"name":"TRR 142","_id":"53"},{"name":"TRR 142 - Project Area A","_id":"54"},{"name":"TRR 142 - Subproject A6","_id":"63"}],"status":"public","_id":"6524","publisher":"AIP Publishing","volume":106,"user_id":"49428","issue":"4","publication":"Applied Physics Letters","abstract":[{"lang":"eng","text":"We use a picosecond acoustics technique to modulate the laser output of electrically pumped GaAs/AlAs micropillar lasers with InGaAs quantum dots. The modulation of the emission wavelength takes place on the frequencies of the nanomechanical extensional and breathing (radial) modes of the micropillars. The amplitude of the modulation for various nanomechanical modes is different for every micropillar which is explained by a various elastic contact between the micropillar walls and polymer environment."}],"date_created":"2019-01-09T09:07:33Z","department":[{"_id":"230"}],"type":"journal_article","author":[{"full_name":"Czerniuk, T.","last_name":"Czerniuk","first_name":"T."},{"first_name":"J.","last_name":"Tepper","full_name":"Tepper, J."},{"full_name":"Akimov, A. V.","last_name":"Akimov","first_name":"A. V."},{"full_name":"Unsleber, S.","first_name":"S.","last_name":"Unsleber"},{"full_name":"Schneider, C.","last_name":"Schneider","first_name":"C."},{"last_name":"Kamp","first_name":"M.","full_name":"Kamp, M."},{"full_name":"Höfling, S.","last_name":"Höfling","first_name":"S."},{"full_name":"Yakovlev, D. R.","last_name":"Yakovlev","first_name":"D. R."},{"full_name":"Bayer, M.","last_name":"Bayer","first_name":"M."}],"publication_identifier":{"issn":["0003-6951","1077-3118"]},"title":"Impact of nanomechanical resonances on lasing from electrically pumped quantum dot micropillars","year":"2015","article_type":"original","intvolume":"       106","publication_status":"published","date_updated":"2022-01-06T07:03:10Z","language":[{"iso":"eng"}],"article_number":"041103","doi":"10.1063/1.4906611"},{"publication":"Physical Review Letters","issue":"2","abstract":[{"text":"We introduce photon-statistics excitation spectroscopy and exemplarily apply it to a quantum-dot micropillar laser. Both the intensity and the photon number statistics of the emission from the micropillar show a strong dependence on the photon statistics of the light used for excitation of the sample. The results under coherent and pseudothermal excitation reveal that a description of the laser properties in terms of mean input photon numbers is not sufficient. It is demonstrated that the micropillar acts as a superthermal light source when operated close to its threshold. Possible applications for important spectroscopic techniques are discussed.","lang":"eng"}],"date_created":"2019-01-09T09:14:36Z","department":[{"_id":"230"}],"type":"journal_article","publication_identifier":{"issn":["0031-9007","1079-7114"]},"author":[{"last_name":"Kazimierczuk","first_name":"T.","full_name":"Kazimierczuk, T."},{"first_name":"J.","last_name":"Schmutzler","full_name":"Schmutzler, J."},{"first_name":"M.","last_name":"Aßmann","full_name":"Aßmann, M."},{"full_name":"Schneider, C.","first_name":"C.","last_name":"Schneider"},{"last_name":"Kamp","first_name":"M.","full_name":"Kamp, M."},{"full_name":"Höfling, S.","first_name":"S.","last_name":"Höfling"},{"first_name":"M.","last_name":"Bayer","full_name":"Bayer, M."}],"title":"Photon-Statistics Excitation Spectroscopy of a Quantum-Dot Micropillar Laser","year":"2015","intvolume":"       115","article_type":"original","date_updated":"2022-01-06T07:03:10Z","publication_status":"published","language":[{"iso":"eng"}],"doi":"10.1103/physrevlett.115.027401","citation":{"bibtex":"@article{Kazimierczuk_Schmutzler_Aßmann_Schneider_Kamp_Höfling_Bayer_2015, title={Photon-Statistics Excitation Spectroscopy of a Quantum-Dot Micropillar Laser}, volume={115}, DOI={<a href=\"https://doi.org/10.1103/physrevlett.115.027401\">10.1103/physrevlett.115.027401</a>}, number={2}, journal={Physical Review Letters}, publisher={American Physical Society (APS)}, author={Kazimierczuk, T. and Schmutzler, J. and Aßmann, M. and Schneider, C. and Kamp, M. and Höfling, S. and Bayer, M.}, year={2015} }","ama":"Kazimierczuk T, Schmutzler J, Aßmann M, et al. Photon-Statistics Excitation Spectroscopy of a Quantum-Dot Micropillar Laser. <i>Physical Review Letters</i>. 2015;115(2). doi:<a href=\"https://doi.org/10.1103/physrevlett.115.027401\">10.1103/physrevlett.115.027401</a>","mla":"Kazimierczuk, T., et al. “Photon-Statistics Excitation Spectroscopy of a Quantum-Dot Micropillar Laser.” <i>Physical Review Letters</i>, vol. 115, no. 2, American Physical Society (APS), 2015, doi:<a href=\"https://doi.org/10.1103/physrevlett.115.027401\">10.1103/physrevlett.115.027401</a>.","short":"T. Kazimierczuk, J. Schmutzler, M. Aßmann, C. Schneider, M. Kamp, S. Höfling, M. Bayer, Physical Review Letters 115 (2015).","chicago":"Kazimierczuk, T., J. Schmutzler, M. Aßmann, C. Schneider, M. Kamp, S. Höfling, and M. Bayer. “Photon-Statistics Excitation Spectroscopy of a Quantum-Dot Micropillar Laser.” <i>Physical Review Letters</i> 115, no. 2 (2015). <a href=\"https://doi.org/10.1103/physrevlett.115.027401\">https://doi.org/10.1103/physrevlett.115.027401</a>.","ieee":"T. Kazimierczuk <i>et al.</i>, “Photon-Statistics Excitation Spectroscopy of a Quantum-Dot Micropillar Laser,” <i>Physical Review Letters</i>, vol. 115, no. 2, 2015.","apa":"Kazimierczuk, T., Schmutzler, J., Aßmann, M., Schneider, C., Kamp, M., Höfling, S., &#38; Bayer, M. (2015). Photon-Statistics Excitation Spectroscopy of a Quantum-Dot Micropillar Laser. <i>Physical Review Letters</i>, <i>115</i>(2). <a href=\"https://doi.org/10.1103/physrevlett.115.027401\">https://doi.org/10.1103/physrevlett.115.027401</a>"},"project":[{"_id":"53","name":"TRR 142"},{"_id":"54","name":"TRR 142 - Project Area A"},{"_id":"61","name":"TRR 142 - Subproject A4"}],"status":"public","_id":"6526","publisher":"American Physical Society (APS)","volume":115,"user_id":"49428"},{"citation":{"short":"D.R. Yakovlev, W. Warkentin, D. Brunne, J. Mund, V.V. Pavlov, A.V. Rodina, R.V. Pisarev, M. Bayer, in: M. Bertolotti, J.W. Haus, A.M. Zheltikov (Eds.), Nonlinear Optics and Applications IX, SPIE, 2015.","chicago":"Yakovlev, D. R., W. Warkentin, D. Brunne, J. Mund, V. V. Pavlov, A. V. Rodina, R. V. Pisarev, and M. Bayer. “Novel Mechanisms of Optical Harmonic Generation on Excitons in Semiconductors.” In <i>Nonlinear Optics and Applications IX</i>, edited by Mario Bertolotti, Joseph W. Haus, and Alexei M. Zheltikov. SPIE, 2015. <a href=\"https://doi.org/10.1117/12.2185309\">https://doi.org/10.1117/12.2185309</a>.","apa":"Yakovlev, D. R., Warkentin, W., Brunne, D., Mund, J., Pavlov, V. V., Rodina, A. V., … Bayer, M. (2015). Novel mechanisms of optical harmonic generation on excitons in semiconductors. In M. Bertolotti, J. W. Haus, &#38; A. M. Zheltikov (Eds.), <i>Nonlinear Optics and Applications IX</i>. Prague, Czech Rep: SPIE. <a href=\"https://doi.org/10.1117/12.2185309\">https://doi.org/10.1117/12.2185309</a>","ieee":"D. R. Yakovlev <i>et al.</i>, “Novel mechanisms of optical harmonic generation on excitons in semiconductors,” in <i>Nonlinear Optics and Applications IX</i>, Prague, Czech Rep, 2015.","ama":"Yakovlev DR, Warkentin W, Brunne D, et al. Novel mechanisms of optical harmonic generation on excitons in semiconductors. In: Bertolotti M, Haus JW, Zheltikov AM, eds. <i>Nonlinear Optics and Applications IX</i>. SPIE; 2015. doi:<a href=\"https://doi.org/10.1117/12.2185309\">10.1117/12.2185309</a>","bibtex":"@inproceedings{Yakovlev_Warkentin_Brunne_Mund_Pavlov_Rodina_Pisarev_Bayer_2015, title={Novel mechanisms of optical harmonic generation on excitons in semiconductors}, DOI={<a href=\"https://doi.org/10.1117/12.2185309\">10.1117/12.2185309</a>}, booktitle={Nonlinear Optics and Applications IX}, publisher={SPIE}, author={Yakovlev, D. R. and Warkentin, W. and Brunne, D. and Mund, J. and Pavlov, V. V. and Rodina, A. V. and Pisarev, R. V. and Bayer, M.}, editor={Bertolotti, Mario and Haus, Joseph W. and Zheltikov, Alexei M.Editors}, year={2015} }","mla":"Yakovlev, D. R., et al. “Novel Mechanisms of Optical Harmonic Generation on Excitons in Semiconductors.” <i>Nonlinear Optics and Applications IX</i>, edited by Mario Bertolotti et al., SPIE, 2015, doi:<a href=\"https://doi.org/10.1117/12.2185309\">10.1117/12.2185309</a>."},"publication":"Nonlinear Optics and Applications IX","project":[{"name":"TRR 142","_id":"53"},{"name":"TRR 142 - Project Area B","_id":"55"},{"_id":"66","name":"TRR 142 - Subproject B1"}],"date_created":"2019-01-09T09:25:50Z","department":[{"_id":"230"}],"type":"conference","conference":{"location":"Prague, Czech Rep","name":"SPIE OPTICS + OPTOELECTRONICS","start_date":"2015-04-13","end_date":"2015-04-16"},"author":[{"last_name":"Yakovlev","first_name":"D. R.","full_name":"Yakovlev, D. R."},{"first_name":"W.","last_name":"Warkentin","full_name":"Warkentin, W."},{"full_name":"Brunne, D.","first_name":"D.","last_name":"Brunne"},{"first_name":"J.","last_name":"Mund","full_name":"Mund, J."},{"last_name":"Pavlov","first_name":"V. V.","full_name":"Pavlov, V. V."},{"full_name":"Rodina, A. V.","last_name":"Rodina","first_name":"A. V."},{"first_name":"R. V.","last_name":"Pisarev","full_name":"Pisarev, R. V."},{"full_name":"Bayer, M.","last_name":"Bayer","first_name":"M."}],"year":"2015","title":"Novel mechanisms of optical harmonic generation on excitons in semiconductors","status":"public","date_updated":"2022-01-06T07:03:10Z","publication_status":"published","_id":"6529","publisher":"SPIE","language":[{"iso":"eng"}],"editor":[{"full_name":"Bertolotti, Mario","first_name":"Mario","last_name":"Bertolotti"},{"first_name":"Joseph W.","last_name":"Haus","full_name":"Haus, Joseph W."},{"full_name":"Zheltikov, Alexei M.","first_name":"Alexei M.","last_name":"Zheltikov"}],"doi":"10.1117/12.2185309","user_id":"49428"},{"type":"journal_article","department":[{"_id":"15"},{"_id":"230"},{"_id":"287"},{"_id":"289"},{"_id":"35"}],"date_created":"2018-03-22T18:33:32Z","publication":"Journal of Applied Physics","issue":"21","doi":"10.1063/1.4936768","article_number":"213105","language":[{"iso":"eng"}],"date_updated":"2022-01-06T06:53:00Z","publication_status":"published","intvolume":"       118","year":"2015","title":"Nonlinear optical sub-bandgap excitation of ZnO-based photonic resonators","author":[{"full_name":"Bader, Christina A.","first_name":"Christina A.","last_name":"Bader"},{"full_name":"Zeuner, Franziska","first_name":"Franziska","last_name":"Zeuner"},{"last_name":"Bader","first_name":"Manuel H. W.","full_name":"Bader, Manuel H. W."},{"id":"30525","full_name":"Zentgraf, Thomas","last_name":"Zentgraf","first_name":"Thomas","orcid":"0000-0002-8662-1101"},{"id":"20798","orcid":"https://orcid.org/0000-0002-3787-3572","first_name":"Cedrik","last_name":"Meier","full_name":"Meier, Cedrik"}],"publication_identifier":{"issn":["0021-8979","1089-7550"]},"project":[{"name":"TRR 142","_id":"53"},{"_id":"54","name":"TRR 142 - Project Area A"},{"name":"TRR 142 - Subproject A5","_id":"62"}],"citation":{"mla":"Bader, Christina A., et al. “Nonlinear Optical Sub-Bandgap Excitation of ZnO-Based Photonic Resonators.” <i>Journal of Applied Physics</i>, vol. 118, no. 21, 213105, AIP Publishing, 2015, doi:<a href=\"https://doi.org/10.1063/1.4936768\">10.1063/1.4936768</a>.","bibtex":"@article{Bader_Zeuner_Bader_Zentgraf_Meier_2015, title={Nonlinear optical sub-bandgap excitation of ZnO-based photonic resonators}, volume={118}, DOI={<a href=\"https://doi.org/10.1063/1.4936768\">10.1063/1.4936768</a>}, number={21213105}, journal={Journal of Applied Physics}, publisher={AIP Publishing}, author={Bader, Christina A. and Zeuner, Franziska and Bader, Manuel H. W. and Zentgraf, Thomas and Meier, Cedrik}, year={2015} }","ama":"Bader CA, Zeuner F, Bader MHW, Zentgraf T, Meier C. Nonlinear optical sub-bandgap excitation of ZnO-based photonic resonators. <i>Journal of Applied Physics</i>. 2015;118(21). doi:<a href=\"https://doi.org/10.1063/1.4936768\">10.1063/1.4936768</a>","ieee":"C. A. Bader, F. Zeuner, M. H. W. Bader, T. Zentgraf, and C. Meier, “Nonlinear optical sub-bandgap excitation of ZnO-based photonic resonators,” <i>Journal of Applied Physics</i>, vol. 118, no. 21, 2015.","apa":"Bader, C. A., Zeuner, F., Bader, M. H. W., Zentgraf, T., &#38; Meier, C. (2015). Nonlinear optical sub-bandgap excitation of ZnO-based photonic resonators. <i>Journal of Applied Physics</i>, <i>118</i>(21). <a href=\"https://doi.org/10.1063/1.4936768\">https://doi.org/10.1063/1.4936768</a>","short":"C.A. Bader, F. Zeuner, M.H.W. Bader, T. Zentgraf, C. Meier, Journal of Applied Physics 118 (2015).","chicago":"Bader, Christina A., Franziska Zeuner, Manuel H. W. Bader, Thomas Zentgraf, and Cedrik Meier. “Nonlinear Optical Sub-Bandgap Excitation of ZnO-Based Photonic Resonators.” <i>Journal of Applied Physics</i> 118, no. 21 (2015). <a href=\"https://doi.org/10.1063/1.4936768\">https://doi.org/10.1063/1.4936768</a>."},"user_id":"20798","volume":118,"publisher":"AIP Publishing","_id":"1696","status":"public"},{"citation":{"ama":"Huang L, Mühlenbernd H, Li X, et al. Broadband Hybrid Holographic Multiplexing with Geometric Metasurfaces. <i>Advanced Materials</i>. 2015;27(41):6444-6449. doi:<a href=\"https://doi.org/10.1002/adma.201502541\">10.1002/adma.201502541</a>","bibtex":"@article{Huang_Mühlenbernd_Li_Song_Bai_Wang_Zentgraf_2015, title={Broadband Hybrid Holographic Multiplexing with Geometric Metasurfaces}, volume={27}, DOI={<a href=\"https://doi.org/10.1002/adma.201502541\">10.1002/adma.201502541</a>}, number={41}, journal={Advanced Materials}, publisher={Wiley-Blackwell}, author={Huang, Lingling and Mühlenbernd, Holger and Li, Xiaowei and Song, Xu and Bai, Benfeng and Wang, Yongtian and Zentgraf, Thomas}, year={2015}, pages={6444–6449} }","mla":"Huang, Lingling, et al. “Broadband Hybrid Holographic Multiplexing with Geometric Metasurfaces.” <i>Advanced Materials</i>, vol. 27, no. 41, Wiley-Blackwell, 2015, pp. 6444–49, doi:<a href=\"https://doi.org/10.1002/adma.201502541\">10.1002/adma.201502541</a>.","short":"L. Huang, H. Mühlenbernd, X. Li, X. Song, B. Bai, Y. Wang, T. Zentgraf, Advanced Materials 27 (2015) 6444–6449.","chicago":"Huang, Lingling, Holger Mühlenbernd, Xiaowei Li, Xu Song, Benfeng Bai, Yongtian Wang, and Thomas Zentgraf. “Broadband Hybrid Holographic Multiplexing with Geometric Metasurfaces.” <i>Advanced Materials</i> 27, no. 41 (2015): 6444–49. <a href=\"https://doi.org/10.1002/adma.201502541\">https://doi.org/10.1002/adma.201502541</a>.","apa":"Huang, L., Mühlenbernd, H., Li, X., Song, X., Bai, B., Wang, Y., &#38; Zentgraf, T. (2015). Broadband Hybrid Holographic Multiplexing with Geometric Metasurfaces. <i>Advanced Materials</i>, <i>27</i>(41), 6444–6449. <a href=\"https://doi.org/10.1002/adma.201502541\">https://doi.org/10.1002/adma.201502541</a>","ieee":"L. Huang <i>et al.</i>, “Broadband Hybrid Holographic Multiplexing with Geometric Metasurfaces,” <i>Advanced Materials</i>, vol. 27, no. 41, pp. 6444–6449, 2015."},"issue":"41","publication":"Advanced Materials","department":[{"_id":"15"},{"_id":"230"}],"type":"journal_article","date_created":"2018-03-22T18:35:18Z","intvolume":"        27","date_updated":"2022-01-06T06:53:01Z","publication_status":"published","author":[{"first_name":"Lingling","last_name":"Huang","full_name":"Huang, Lingling"},{"first_name":"Holger","last_name":"Mühlenbernd","full_name":"Mühlenbernd, Holger"},{"full_name":"Li, Xiaowei","last_name":"Li","first_name":"Xiaowei"},{"full_name":"Song, Xu","first_name":"Xu","last_name":"Song"},{"last_name":"Bai","first_name":"Benfeng","full_name":"Bai, Benfeng"},{"full_name":"Wang, Yongtian","last_name":"Wang","first_name":"Yongtian"},{"full_name":"Zentgraf, Thomas","first_name":"Thomas","orcid":"0000-0002-8662-1101","last_name":"Zentgraf","id":"30525"}],"publication_identifier":{"issn":["0935-9648"]},"title":"Broadband Hybrid Holographic Multiplexing with Geometric Metasurfaces","status":"public","year":"2015","volume":27,"doi":"10.1002/adma.201502541","user_id":"30525","_id":"1698","publisher":"Wiley-Blackwell","page":"6444-6449"},{"citation":{"bibtex":"@article{Zheng_Mühlenbernd_Kenney_Li_Zentgraf_Zhang_2015, title={Metasurface holograms reaching 80% efficiency}, volume={10}, DOI={<a href=\"https://doi.org/10.1038/nnano.2015.2\">10.1038/nnano.2015.2</a>}, number={4}, journal={Nature Nanotechnology}, publisher={Springer Nature}, author={Zheng, Guoxing and Mühlenbernd, Holger and Kenney, Mitchell and Li, Guixin and Zentgraf, Thomas and Zhang, Shuang}, year={2015}, pages={308–312} }","ama":"Zheng G, Mühlenbernd H, Kenney M, Li G, Zentgraf T, Zhang S. Metasurface holograms reaching 80% efficiency. <i>Nature Nanotechnology</i>. 2015;10(4):308-312. doi:<a href=\"https://doi.org/10.1038/nnano.2015.2\">10.1038/nnano.2015.2</a>","mla":"Zheng, Guoxing, et al. “Metasurface Holograms Reaching 80% Efficiency.” <i>Nature Nanotechnology</i>, vol. 10, no. 4, Springer Nature, 2015, pp. 308–12, doi:<a href=\"https://doi.org/10.1038/nnano.2015.2\">10.1038/nnano.2015.2</a>.","chicago":"Zheng, Guoxing, Holger Mühlenbernd, Mitchell Kenney, Guixin Li, Thomas Zentgraf, and Shuang Zhang. “Metasurface Holograms Reaching 80% Efficiency.” <i>Nature Nanotechnology</i> 10, no. 4 (2015): 308–12. <a href=\"https://doi.org/10.1038/nnano.2015.2\">https://doi.org/10.1038/nnano.2015.2</a>.","short":"G. Zheng, H. Mühlenbernd, M. Kenney, G. Li, T. Zentgraf, S. Zhang, Nature Nanotechnology 10 (2015) 308–312.","ieee":"G. Zheng, H. Mühlenbernd, M. Kenney, G. Li, T. Zentgraf, and S. Zhang, “Metasurface holograms reaching 80% efficiency,” <i>Nature Nanotechnology</i>, vol. 10, no. 4, pp. 308–312, 2015.","apa":"Zheng, G., Mühlenbernd, H., Kenney, M., Li, G., Zentgraf, T., &#38; Zhang, S. (2015). Metasurface holograms reaching 80% efficiency. <i>Nature Nanotechnology</i>, <i>10</i>(4), 308–312. <a href=\"https://doi.org/10.1038/nnano.2015.2\">https://doi.org/10.1038/nnano.2015.2</a>"},"issue":"4","publication":"Nature Nanotechnology","department":[{"_id":"15"},{"_id":"230"}],"type":"journal_article","date_created":"2018-03-22T18:36:36Z","intvolume":"        10","publication_status":"published","date_updated":"2022-01-06T06:53:01Z","author":[{"full_name":"Zheng, Guoxing","first_name":"Guoxing","last_name":"Zheng"},{"last_name":"Mühlenbernd","first_name":"Holger","full_name":"Mühlenbernd, Holger"},{"full_name":"Kenney, Mitchell","first_name":"Mitchell","last_name":"Kenney"},{"first_name":"Guixin","last_name":"Li","full_name":"Li, Guixin"},{"id":"30525","first_name":"Thomas","last_name":"Zentgraf","orcid":"0000-0002-8662-1101","full_name":"Zentgraf, Thomas"},{"last_name":"Zhang","first_name":"Shuang","full_name":"Zhang, Shuang"}],"publication_identifier":{"issn":["1748-3387","1748-3395"]},"status":"public","year":"2015","title":"Metasurface holograms reaching 80% efficiency","volume":10,"user_id":"30525","doi":"10.1038/nnano.2015.2","_id":"1700","publisher":"Springer Nature","page":"308-312"},{"project":[{"name":"Enabling Heterogeneous Hardware Acceleration using Novel Programming and Scheduling Models","grant_number":"01|H11004","_id":"30"}],"abstract":[{"text":"The use of heterogeneous computing resources, such as graphics processing units or other specialized co-processors, has become widespread in recent years because of their performance and energy efficiency advantages. Operating system approaches that are limited to optimizing CPU usage are no longer sufficient for the efficient utilization of systems that comprise diverse resource types.\r\n\r\nEnabling task preemption on these architectures and migration of tasks between different resource types at run-time is not only key to improving the performance and energy consumption but also to enabling automatic scheduling methods for heterogeneous compute nodes.\r\n\r\nThis thesis proposes novel techniques for run-time management of heterogeneous resources and enabling tasks to migrate between diverse hardware. It provides fundamental work towards future operating systems by discussing implications, limitations, and chances of the heterogeneity and introducing solutions for energy- and performance-efficient run-time systems. Scheduling methods to utilize heterogeneous systems by the use of a centralized scheduler are presented that show benefits over existing approaches in varying case studies.","lang":"eng"}],"citation":{"apa":"Beisel, T. (2015). <i>Management and Scheduling of Accelerators for Heterogeneous High-Performance Computing</i>. Berlin: Logos Verlag Berlin GmbH.","ieee":"T. Beisel, <i>Management and Scheduling of Accelerators for Heterogeneous High-Performance Computing</i>. Berlin: Logos Verlag Berlin GmbH, 2015.","short":"T. Beisel, Management and Scheduling of Accelerators for Heterogeneous High-Performance Computing, Logos Verlag Berlin GmbH, Berlin, 2015.","chicago":"Beisel, Tobias. <i>Management and Scheduling of Accelerators for Heterogeneous High-Performance Computing</i>. Berlin: Logos Verlag Berlin GmbH, 2015.","mla":"Beisel, Tobias. <i>Management and Scheduling of Accelerators for Heterogeneous High-Performance Computing</i>. Logos Verlag Berlin GmbH, 2015.","ama":"Beisel T. <i>Management and Scheduling of Accelerators for Heterogeneous High-Performance Computing</i>. Berlin: Logos Verlag Berlin GmbH; 2015.","bibtex":"@book{Beisel_2015, place={Berlin}, title={Management and Scheduling of Accelerators for Heterogeneous High-Performance Computing}, publisher={Logos Verlag Berlin GmbH}, author={Beisel, Tobias}, year={2015} }"},"supervisor":[{"last_name":"Plessl","orcid":"0000-0001-5728-9982","first_name":"Christian","full_name":"Plessl, Christian","id":"16153"}],"department":[{"_id":"78"},{"_id":"27"},{"_id":"518"}],"type":"dissertation","date_created":"2019-07-10T09:36:58Z","place":"Berlin","date_updated":"2022-01-06T06:50:48Z","author":[{"last_name":"Beisel","first_name":"Tobias","full_name":"Beisel, Tobias"}],"publication_identifier":{"isbn":["978-3-8325-4155-2"]},"year":"2015","status":"public","title":"Management and Scheduling of Accelerators for Heterogeneous High-Performance Computing","user_id":"3118","language":[{"iso":"eng"}],"_id":"10624","publisher":"Logos Verlag Berlin GmbH","page":"183"},{"department":[{"_id":"233"}],"type":"journal_article","date_created":"2019-08-16T12:40:35Z","citation":{"ama":"Röwenstrunk D, Prätzlich T, Betzwieser T, Müller M, Szwillus G, Veit J. Das Gesamtkunstwerk Oper aus Datensicht. <i>Datenbank-Spektrum</i>. 2015:65-72. doi:<a href=\"https://doi.org/10.1007/s13222-015-0179-0\">10.1007/s13222-015-0179-0</a>","short":"D. Röwenstrunk, T. Prätzlich, T. Betzwieser, M. Müller, G. Szwillus, J. Veit, Datenbank-Spektrum (2015) 65–72.","chicago":"Röwenstrunk, Daniel, Thomas Prätzlich, Thomas Betzwieser, Meinard Müller, Gerd Szwillus, and Joachim Veit. “Das Gesamtkunstwerk Oper aus Datensicht.” <i>Datenbank-Spektrum</i>, 2015, 65–72. <a href=\"https://doi.org/10.1007/s13222-015-0179-0\">https://doi.org/10.1007/s13222-015-0179-0</a>.","bibtex":"@article{Röwenstrunk_Prätzlich_Betzwieser_Müller_Szwillus_Veit_2015, title={Das Gesamtkunstwerk Oper aus Datensicht}, DOI={<a href=\"https://doi.org/10.1007/s13222-015-0179-0\">10.1007/s13222-015-0179-0</a>}, journal={Datenbank-Spektrum}, author={Röwenstrunk, Daniel and Prätzlich, Thomas and Betzwieser, Thomas and Müller, Meinard and Szwillus, Gerd and Veit, Joachim}, year={2015}, pages={65–72} }","apa":"Röwenstrunk, D., Prätzlich, T., Betzwieser, T., Müller, M., Szwillus, G., &#38; Veit, J. (2015). Das Gesamtkunstwerk Oper aus Datensicht. <i>Datenbank-Spektrum</i>, 65–72. <a href=\"https://doi.org/10.1007/s13222-015-0179-0\">https://doi.org/10.1007/s13222-015-0179-0</a>","mla":"Röwenstrunk, Daniel, et al. “Das Gesamtkunstwerk Oper aus Datensicht.” <i>Datenbank-Spektrum</i>, 2015, pp. 65–72, doi:<a href=\"https://doi.org/10.1007/s13222-015-0179-0\">10.1007/s13222-015-0179-0</a>.","ieee":"D. Röwenstrunk, T. Prätzlich, T. Betzwieser, M. Müller, G. Szwillus, and J. Veit, “Das Gesamtkunstwerk Oper aus Datensicht,” <i>Datenbank-Spektrum</i>, pp. 65–72, 2015."},"publication":"Datenbank-Spektrum","user_id":"439","doi":"10.1007/s13222-015-0179-0","_id":"12934","language":[{"iso":"ger"}],"page":"65-72","publication_status":"published","date_updated":"2022-01-06T06:51:26Z","author":[{"full_name":"Röwenstrunk, Daniel","last_name":"Röwenstrunk","first_name":"Daniel","orcid":"https://orcid.org/0000-0001-6271-2095","id":"439"},{"full_name":"Prätzlich, Thomas","first_name":"Thomas","last_name":"Prätzlich"},{"full_name":"Betzwieser, Thomas","last_name":"Betzwieser","first_name":"Thomas"},{"last_name":"Müller","first_name":"Meinard","full_name":"Müller, Meinard"},{"first_name":"Gerd","last_name":"Szwillus","full_name":"Szwillus, Gerd"},{"last_name":"Veit","first_name":"Joachim","full_name":"Veit, Joachim"}],"publication_identifier":{"issn":["1618-2162","1610-1995"]},"status":"public","title":"Das Gesamtkunstwerk Oper aus Datensicht","year":"2015"},{"publication_status":"published","date_updated":"2022-01-06T06:52:03Z","intvolume":"         3","status":"public","year":"2015","title":"Amplitude- and Phase-Controlled Surface Plasmon Polariton Excitation with Metasurfaces","author":[{"last_name":"Mühlenbernd","first_name":"Holger","full_name":"Mühlenbernd, Holger"},{"last_name":"Georgi","first_name":"Philip","full_name":"Georgi, Philip"},{"last_name":"Pholchai","first_name":"Nitipat","full_name":"Pholchai, Nitipat"},{"first_name":"Lingling","last_name":"Huang","full_name":"Huang, Lingling"},{"full_name":"Li, Guixin","last_name":"Li","first_name":"Guixin"},{"last_name":"Zhang","first_name":"Shuang","full_name":"Zhang, Shuang"},{"id":"30525","full_name":"Zentgraf, Thomas","orcid":"0000-0002-8662-1101","first_name":"Thomas","last_name":"Zentgraf"}],"publication_identifier":{"issn":["2330-4022","2330-4022"]},"user_id":"30525","doi":"10.1021/acsphotonics.5b00536","volume":3,"page":"124-129","publisher":"American Chemical Society (ACS)","_id":"1461","issue":"1","publication":"ACS Photonics","citation":{"short":"H. Mühlenbernd, P. Georgi, N. Pholchai, L. Huang, G. Li, S. Zhang, T. Zentgraf, ACS Photonics 3 (2015) 124–129.","chicago":"Mühlenbernd, Holger, Philip Georgi, Nitipat Pholchai, Lingling Huang, Guixin Li, Shuang Zhang, and Thomas Zentgraf. “Amplitude- and Phase-Controlled Surface Plasmon Polariton Excitation with Metasurfaces.” <i>ACS Photonics</i> 3, no. 1 (2015): 124–29. <a href=\"https://doi.org/10.1021/acsphotonics.5b00536\">https://doi.org/10.1021/acsphotonics.5b00536</a>.","ieee":"H. Mühlenbernd <i>et al.</i>, “Amplitude- and Phase-Controlled Surface Plasmon Polariton Excitation with Metasurfaces,” <i>ACS Photonics</i>, vol. 3, no. 1, pp. 124–129, 2015.","apa":"Mühlenbernd, H., Georgi, P., Pholchai, N., Huang, L., Li, G., Zhang, S., &#38; Zentgraf, T. (2015). Amplitude- and Phase-Controlled Surface Plasmon Polariton Excitation with Metasurfaces. <i>ACS Photonics</i>, <i>3</i>(1), 124–129. <a href=\"https://doi.org/10.1021/acsphotonics.5b00536\">https://doi.org/10.1021/acsphotonics.5b00536</a>","bibtex":"@article{Mühlenbernd_Georgi_Pholchai_Huang_Li_Zhang_Zentgraf_2015, title={Amplitude- and Phase-Controlled Surface Plasmon Polariton Excitation with Metasurfaces}, volume={3}, DOI={<a href=\"https://doi.org/10.1021/acsphotonics.5b00536\">10.1021/acsphotonics.5b00536</a>}, number={1}, journal={ACS Photonics}, publisher={American Chemical Society (ACS)}, author={Mühlenbernd, Holger and Georgi, Philip and Pholchai, Nitipat and Huang, Lingling and Li, Guixin and Zhang, Shuang and Zentgraf, Thomas}, year={2015}, pages={124–129} }","ama":"Mühlenbernd H, Georgi P, Pholchai N, et al. Amplitude- and Phase-Controlled Surface Plasmon Polariton Excitation with Metasurfaces. <i>ACS Photonics</i>. 2015;3(1):124-129. doi:<a href=\"https://doi.org/10.1021/acsphotonics.5b00536\">10.1021/acsphotonics.5b00536</a>","mla":"Mühlenbernd, Holger, et al. “Amplitude- and Phase-Controlled Surface Plasmon Polariton Excitation with Metasurfaces.” <i>ACS Photonics</i>, vol. 3, no. 1, American Chemical Society (ACS), 2015, pp. 124–29, doi:<a href=\"https://doi.org/10.1021/acsphotonics.5b00536\">10.1021/acsphotonics.5b00536</a>."},"type":"journal_article","department":[{"_id":"15"},{"_id":"230"}],"date_created":"2018-03-20T18:24:20Z"},{"publication":"Metallurgical and Materials Transactions A","citation":{"bibtex":"@article{Leuders_Vollmer_Brenne_Tröster_Niendorf_2015, title={Fatigue Strength Prediction for Titanium Alloy TiAl6V4 Manufactured by Selective Laser Melting}, DOI={<a href=\"https://doi.org/10.1007/s11661-015-2864-x\">10.1007/s11661-015-2864-x</a>}, journal={Metallurgical and Materials Transactions A}, author={Leuders, Stefan and Vollmer, Malte and Brenne, Florian and Tröster, Thomas and Niendorf, Thomas}, year={2015}, pages={3816–3823} }","ama":"Leuders S, Vollmer M, Brenne F, Tröster T, Niendorf T. 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Weiß Borkowski, T. Marten, H. Block, T. Tröster, in: 2015.","chicago":"Weiß Borkowski, Nathalie, Thorsten Marten, Holger Block, and Thomas Tröster. “Multi-Axial Material Testing at High Strain Rates in High Speed Cupping Tests,” 2015.","apa":"Weiß Borkowski, N., Marten, T., Block, H., &#38; Tröster, T. (2015). Multi-axial Material Testing at High Strain Rates in High Speed Cupping Tests. Presented at the 5th International Conference on Hot Sheet Metal Forming of High-Performance Steel, CHS2 2015, Toronto, Canada.","ieee":"N. Weiß Borkowski, T. Marten, H. Block, and T. Tröster, “Multi-axial Material Testing at High Strain Rates in High Speed Cupping Tests,” presented at the 5th International Conference on Hot Sheet Metal Forming of High-Performance Steel, CHS2 2015, Toronto, Canada, 2015.","ama":"Weiß Borkowski N, Marten T, Block H, Tröster T. Multi-axial Material Testing at High Strain Rates in High Speed Cupping Tests. 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