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Puplikationen in Fachjournalen

C

C. Schneider, T. Heindel, A. Huggenberger, T. A. Niederstrasser, S. Reitzenstein, A. Forchel, S. Höfling, and M. Kamp: Microcavity enhanced single photon emission from an electrically driven site-controlled quantum dot, Applied Physics Letters 100, 091108 (2012).

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E

E. R. Schmidgall, I. Schwartz, D. Cogan, L. Gantz, T. Heindel, S. Reitzenstein, and D. Gershoni: All-optical depletion of dark excitons from a semiconductor quantum dot, Applied Physics Letters 106, 193101 (2015).

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F

F. Albert, S. Stobbe, C. Schneider, T. Heindel, S. Reitzenstein, S. Höfling, P. Lodahl, L. Worschech and A. Forchel: Quantum efficiency and oscillator strength of site-controlled InAs quantum dots, Applied Physics Letters 96, 151102 (2010).

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F. Albert, T. Braun, T. Heindel, C. Schneider, S. Reitzenstein, S. Höfling, L. Worschech and A. Forchel: Whispering gallery mode lasing in electrically driven quantum dot micropillars, Applied Physics Letters 97, 101108 (2010).

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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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J

J. Heinrich, A. Huggenberger, T. Heindel, S. Reitzenstein, S. Höfling, L. Worschech, and A. Forchel: Single photon emission from positioned GaAs/AlGaAs photonic nanowires, Applied Physics Letters 96, 211117 (2010).

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L

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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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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M

M. Gschrey, A. Thoma, P. Schnauber, M. Seifried, R. Schmidt, B. Wohlfeil, L. Krüger, J.-H. Schulze, T. Heindel, S. Burger, F. Schmidt, A. Strittmatter, S. Rodt, and S. Reitzenstein: Highly indistinguishable photons from deterministic quantum-dot microlenses utilizing three-dimensional in situ electron-beam lithography, Nat. Commun. 6, 7662 (2015).

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M. Gschrey, F. Gericke, A. Schüßler, R. Schmidt, J.-H. Schulze, T. Heindel, S. Rodt, A. Strittmatter, and S. Reitzenstein: In situ electron-beam lithography of deterministic single-quantum-dot mesa-structures using low-temperature cathodoluminescence spectroscopy, Applied Physics Letters 102, 251113 (2013).


M. M. Karow, P. Munnelly, T. Heindel, M. Kamp, S. Höfling, C. Schneider, and S. Reitzenstein: On-chip light detection using monolithically integrated quantum dot micropillars, Applied Physics Letters 108, 081110 (2016).

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M. Rau, T. Heindel, S. Unsleber, T. Braun, J. Fischer, S. Frick, S. Nauerth, C. Schneider, G. Vest, S. Reitzenstein, M. Kamp, A. Forchel, S. Höfling, and H. Weinfurter: Free space quantum key distribution over 500 meters using electrically driven quantum dot single-photon sources - a proof of principle experiment, New Journal of Physics 16, 043003 (2014).

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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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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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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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