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AG Prof. Dr. S. ReitzensteinPublikationen

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Publikationen

2017

Hybrid microcavity for superminiature single quantum dot based emitters

Gaisler, V. A., Derebezov, I. A., Gaisler, A. V., Dmitriev, D. V., Toropov, A. I., Fischbach, S., Schlehahn, A., Kaganskiy, A., Heindel, T., Bounouar, S., Rodt, S. and Reitzenstein, S.

Optoelectronics, Instrumentation and Data Processing 53, 178–183 (2017).

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Emission from quantum-dot high-beta microcavities: transition from spontaneous emission to lasing and the effects of superradiant emitter coupling

Kreinberg, S., Chow, W. W., Wolters, J., Schneider, C., Gies, C., Jahnke, F., Höfling, S., Kamp, M. and Reitzenstein, S.

Light: Science & Applications , e17030 (2017).

ArXiv e-prints 1610.04129.

"Unveiling the physics of microcavity lasers": https://www.nature.com/articles/lsa201791

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Two-photon interference from remote deterministic quantum dot microlenses

Thoma, A., Schnauber, P., Böhm, J., Gschrey, M., Schulze, J.-H., Strittmatter, A., Rodt, S., Heindel, T. and Reitzenstein, S.

Applied Physics Letters 110, 011104 (2017).

ArXiv e-prints 1611.06859.

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Transition from Jaynes-Cummings to Autler-Townes ladder in a quantum dot-microcavity system

Hopfmann, C., Carmele, A., Musiał, A., Schneider, C., Kamp, M., Höfling, S., Knorr, A. and Reitzenstein, S.

Phys. Rev. B 95, 035302 (2017).

ArXiv e-prints 1609.03462.

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Resonance fluorescence of a site-controlled quantum dot realized by the buried-stressor growth technique

Strauß, M., Kaganskiy, A., Voigt, R., Schnauber, P., Schulze, J.-H., Rodt, S., Strittmatter, A. and Reitzenstein, S.

Applied Physics Letters 110, 111101 (2017).

ArXiv e-prints 1612.08063.

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A bright triggered twin-photon source in the solid state

Heindel, T., Thoma, A., Helversen, M. v., Schmidt, M., Schlehahn, A., Gschrey, M., Schnauber, P., Schulze, J.-H., Strittmatter, A., Beyer, J., Rodt, S., Carmele, A., Knorr, A. and Reitzenstein, S.

Nature Communications 8, 14870 (2017).

ArXiv e-prints 1608.02768.

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Electrically Tunable Single-Photon Source Triggered by a Monolithically Integrated Quantum Dot Microlaser

Munnelly, P., Heindel, T., Thoma, A., Kamp, M., Höfling, S., Schneider, C. and Reitzenstein, S.

ACS Photonics 4, 790 (2017).

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Single Quantum Dot with Microlens and 3D-Printed Micro-objective as Integrated Bright Single-Photon Source

Fischbach, S., Schlehahn, A., Thoma, A., Srocka, N., Gissibl, T., Ristok, S., Thiele, S., Kaganskiy, A., Strittmatter, A., Heindel, T., Rodt, S., Herkommer, A., Giessen, H. and Reitzenstein, S.

ACS Photonics 4, 1327-1332 (2017).

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2016

Cavity assisted emission of single, paired and heralded photons from a single quantum dot device

Kuhn, S. C., Knorr, A., Reitzenstein, S. and Richter, M.

Opt. Express 24, 25446–25461 (2016).

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Injection Locking of Quantum-Dot Microlasers Operating in the Few-Photon Regime

Schlottmann, E., Holzinger, S., Lingnau, B., Lüdge, K., Schneider, C., Kamp, M., Höfling, S., Wolters, J. and Reitzenstein, S.

Phys. Rev. Applied 6, 044023 (2016).

ArXiv e-prints 1604.02817.

Physical Review Applied Editors' Suggestion (October 2016)

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Photon-statistics excitation spectroscopy of a single two-level system

Strauß, M., Placke, M., Kreinberg, S., Schneider, C., Kamp, M., Höfling, S., Wolters, J. and Reitzenstein, S.

Phys. Rev. B 93, 241306(R) (2016).

ArXiv e-prints 1601.05234.

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On-chip light detection using monolithically integrated quantum dot micropillars

Karow, M. M., Munnelly, P., Heindel, T., Kamp, M., Höfling, S., Schneider, C. and Reitzenstein, S.

Applied Physics Letters 108, 081110 (2016).

APL Editor's Pick by Shanhui Fan (week of Feb 28 2016)

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Exploring Dephasing of a Solid-State Quantum Emitter via Time- and Temperature-Dependent Hong-Ou-Mandel Experiments

Thoma, A., Schnauber, P., Gschrey, M., Seifried, M., Wolters, J., Schulze, J.-H., Strittmatter, A., Rodt, S., Carmele, A., Knorr, A., Heindel, T. and Reitzenstein, S.

Phys. Rev. Lett. 116, 033601 (2016).

ArXiv e-prints 1507.05900.

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Controlling the Biexciton-Exciton Cascade Kinetics in a Quantum Dot via Coupling to a Microcavity Optical Mode

Sek, G., Krizhanovskii, D., Kulakovskii, V. D., Reitzenstein, S. and Kamp, M.

Acta. Phys. Pol. A 129, A-44 (2016).

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Generating single photons at gigahertz modulation-speed using electrically controlled quantum dot microlenses

Schlehahn, A., Schmidt, R., Hopfmann, C., Schulze, J.-H., Strittmatter, A., Heindel, T., Gantz, L., Schmidgall, E. R., Gershoni, D. and Reitzenstein, S.

Applied Physics Letters 108, 021104 (2016).

ArXiv e-prints 1510.07314.

Featured in Nature Photonics | Research Highlights: Nature Photonics 10, 145 (2016) (doi:10.1038/nphoton.2016.33) Springer-Nature OutstandingPoster Award at the 9th International Conference on Quantum Dots (QD2016) sponsored by the Nature Publishing Group

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Quantum dot micropillar cavities with quality factors exceeding 250,000

Schneider, C., Gold, P., Reitzenstein, S., Höfling, S. and Kamp, M.

Applied Physics B 122, 1-6 (2016).

ArXiv e-prints 1510.05447.

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Probing the carrier transfer processes in a self-assembled system with In0.3Ga0.7As/GaAs quantum dots by photoluminescence excitation spectroscopy

Podemski, P., Pieczarka, M., Marynski, A., Misiewicz, J., Löffler, A., Höfling, S., Reithmaier, J. P., Reitzenstein, S. and Sek, G.

Superlattices and Microstructures 93, 214 - 220 (2016).

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Using low-contrast negative-tone PMMA at cryogenic temperatures for 3D electron beam lithography

Schnauber, P., Schmidt, R., Kaganskiy, A., Heuser, T., Gschrey, M., Rodt, S. and Reitzenstein, S.

Nanotechnology 27, 195301 (2016).

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An electrically driven cavity-enhanced source of indistinguishable photons with 61% overall efficiency

Schlehahn, A., Thoma, A., Munnelly, P., Kamp, M., Höfling, S., Heindel, T., Schneider, C. and Reitzenstein, S.

APL Photonics 1, 011301 (2016).

Selected for cover image

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Mode-switching induced super-thermal bunching in quantum-dot microlasers

Redlich, C., Lingnau, B., Holzinger, S., Schlottmann, E., Kreinberg, S., Schneider, C., Kamp, M., Höfling, S., Wolters, J., Reitzenstein, S. and Lüdge, K.

New Journal of Physics 18, 063011 (2016).

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Efficient stray-light suppression for resonance fluorescence in quantum dot micropillars using self-aligned metal apertures

Hopfmann, C., Musiał, A., Maier, S., Emmerling, M., Schneider, C., Höfling, S., Kamp, M. and Reitzenstein, S.

Semiconductor Science and Technology 31, 095007 (2016).

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CSAR 62 as negative-tone resist for high-contrast e-beam lithography at temperatures between 4K and room temperature

Kaganskiy, A., Heuser, T., Schmidt, R., Rodt, S. and Reitzenstein, S.

Journal of Vacuum Science & Technology B 34, 061603 (2016).

ArXiv e-prints 1611.07266.

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Impact of Phonons on Dephasing of Individual Excitons in Deterministic Quantum Dot Microlenses

Jakubczyk, T., Delmonte, V., Fischbach, S., Wigger, D., Reiter, D. E., Mermillod, Q., Schnauber, P., Kaganskiy, A., Schulze, J.-H., Strittmatter, A., Rodt, S., Langbein, W., Kuhn, T., Reitzenstein, S. and Kasprzak, J.

ACS Photonics 3, 2461-2466 (2016).

ArXiv e-prints 1610.09899.

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2015

Compensation of phonon-induced renormalization of vacuum Rabi splitting in large quantum dots: Towards temperature-stable strong coupling in the solid state with quantum dot-micropillars

Hopfmann, C., Musiał, A., Strauß, M., Barth, A. M., Glässl, M., Vagov, A., Strauß, M., Schneider, C., Höfling, S., Kamp, M., Axt, V. M. and Reitzenstein, S.

Phys. Rev. B 92, 245403 (2015).

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Observation of resonance fluorescence and the Mollow triplet from a coherently driven site-controlled quantum dot

Unsleber, S., Maier, S., McCutcheon, D. P. S., He, Y.-M., Dambach, M., Gschrey, M., Gregersen, N., Mørk, J., Reitzenstein, S., Höfling, S., Schneider, C. and Kamp, M.

Optica 2, 1072–1077 (2015).

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Highly indistinguishable photons from deterministic quantum-dot microlenses utilizing three-dimensional in situ electron-beam lithography

Gschrey, M., Thoma, A., Schnauber, P., Seifried, M., Schmidt, R., Wohlfeil, B., Kruger, L., Schulze, J. H., Heindel, T., Burger, S., Schmidt, F., Strittmatter, A., Rodt, S. and Reitzenstein, S.

Nature Communications 6, 7662 (2015).

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Strong charge-carrier localization in InAs/GaAs submonolayer stacks prepared by Sb-assisted metalorganic vapor-phase epitaxy

Quandt, D., Schulze, J.-H., Schliwa, A., Diemer, Z., Prohl, C., Lenz, A., Eisele, H., Strittmatter, A., Pohl, U. W., Gschrey, M., Rodt, S., Reitzenstein, S., Bimberg, D., Lehmann, M. and Weyland, M.

Phys. Rev. B 91, 235418 (2015).

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Correlations between axial and lateral emission of coupled quantum dot-micropillar cavities

Musiał, A., Hopfmann, C., Heindel, T., Gies, C., Florian, M., Leymann, H. A. M., Foerster, A., Schneider, C., Jahnke, F., Höfling, S., Kamp, M. and Reitzenstein, S.

Phys. Rev. B 91, 205310 (2015).

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Unconventional collective normal-mode coupling in quantum-dot-based bimodal microlasers

Khanbekyan, M., Leymann, H. A. M., Hopfmann, C., Foerster, A., Schneider, C., Höfling, S., Kamp, M., Wiersig, J. and Reitzenstein, S.

Phys. Rev. A 91, 043840 (2015).

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Photocurrent readout and electro-optical tuning of resonantly excited exciton polaritons in a trap

Winkler, K., Gold, P., Bradel, B., Reitzenstein, S., Kulakovskii, V. D., Kamp, M., Schneider, C. and Höfling, S.

Phys. Rev. B 91, 045127 (2015).

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