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Puplikationen in Fachjournalen

2020

T. Kupko, M. von Helversen, L. Rickert, J.-H. Schulze, A. Strittmatter, M. Gschrey, S. Rodt, S. Reitzenstein, T. Heindel: Tools for the performance optimization of single-photon quantum key distribution, npj Quantum Information 6, 29 (2020).

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S. Rodt, S. Reitzenstein and T. Heindel: Deterministically fabricated solid-state quantum-light sources, Journal of Physics: Condensed Matter 32, 153003 (2020).

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M. Schmidt, M. von Helversen, S. Fischbach, A. Kaganskiy, R. Schmidt, A. Schliwa, T. Heindel, S. Rodt, and S. Reitzenstein: Deterministically fabricated spectrally-tunable quantum dot based single-photon source, Optical Materials Express 10, 76 (2020).

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N. Srocka, P. Mrowiński, J. Große, M. von Helversen, T. Heindel, S. Rodt, S. Reitzenstein: Deterministically fabricated quantum dot single-photon source emitting indistinguishable photons in the telecom O-band, Applied Physics Letters 116, 231104 (2020).

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2019

L. Rickert, T. Kupko, S. Rodt, S. Reitzenstein, T. Heindel: Optimized designs for telecom-wavelength quantum light sources based on hybrid circular Bragg gratings, Optics Express 27, 36824 (2019).

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L. Bremer, S. Fischbach, S.-I. Park, S. Rodt, J.-D. Song, T. Heindel, S. Reitzenstein: Cesium-Vapor-Based Delay of Single Photons Emitted by Deterministically Fabricated Quantum Dot Microlenses, Advanced Quantum Technologies , 1900071 (2019).

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M. v. Helversen, J. Böhm, M. Schmidt, M. Gschrey, J,-H, Schulze, A. Strittmatter, S. Rodt, J. Beyer, T. Heindel, S. Reitzenstein: Quantum Metrology of Solid-State Single-Photon Sources using Photon-Number-Resolving Detectors, New Journal of Physics 21, 035007 (2019).

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2018

M. Schmidt, M. von Helversen, M. López, F. Gericke, E. Schlottmann, T. Heindel, S. Kück, S. Reitzenstein, and J. Beyer: Photon-Number-Resolving Transition-Edge Sensors for the Metrology of Quantum Light Sources, Journal of Low Temperature Physics 193, 1243 (2018).

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A. Kaganskiy, S. Fischbach, A. Strittmatter, S. Rodt, T. Heindel, S. Reitzenstein: Enhancing the photon-extraction efficiency of site-controlled quantum dots by deterministically fabricated microlenses, Optics Communications 413, 162–166 (2018).

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A. Kaganskiy, F. Gericke, T. Heuser, T. Heindel, X. Porte, and S. Reitzenstein: Micropillars with a controlled number of site-controlled quantum dots, Applied Physics Letters 112, 071101 (2018).

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A. Schlehahn, S. Fischbach, R. Schmidt, A. Kaganskiy, A. Strittmatter, S. Rodt, T. Heindel, and S. Reitzenstein: A stand-alone fiber-coupled single-photon source, Scientific Reports 8, 1340 (2018).

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F. Gericke, M. Segnon, M. von Helversen, C. Hopfmann, T. Heindel, C. Schneider, S. Höfling, M. Kamp, A. Musiał, X. Porte, C. Gies, and S. Reitzenstein: Controlling the gain contribution of background emitters in few-quantum-dot microlasers, New Journal of Physics 20, 023036 (2018).

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P. Schnauber, J. Schall, S. Bounouar, T. Höhne, S.-I. Park, G.-H. Ryu, T. Heindel, S. Burger, J.-D. Song, S. Rodt, and S. Reitzenstein: Deterministic Integration of Quantum Dots into on-Chip Multimode Interference Beamsplitters Using in Situ Electron Beam Lithography, Nano Lett. 18, 2336–2342 (2018).

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2017

C. Gies, F. Gericke, P. Gartner, S. Holzinger, C. Hopfmann, T. Heindel, J. Wolters, C. Schneider, M. Florian, F. Jahnke, S. Höfling, M. Kamp, and S. Reitzenstein: Strong light-matter coupling in the presence of lasing, Phys. Rev. A 96, 023806 (2017).

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T. Heindel, A. Thoma, M. von Helversen, M. Schmidt, A. Schlehahn, M. Gschrey, P. Schnauber, J.-H. Schulze, A. Strittmatter, J. Beyer, S. Rodt, A. Carmele, A. Knorr, and S. Reitzenstein: A bright triggered twin-photon source in the solid state, Nature Communications 8, 14870 (2017).

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