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Extrapolation of the intensity autocorrelation function of a quantum-dot micropillar laser into the thermal emission regime

Tempel, J. S., Akimov, I. A., Assmann, M., Schneider, C., Höfling, S., Kistner, C., Reitzenstein, S., Worschech, L., Forchel, A. and Bayer, M.

Journal of the Optical Society of America B-optical Physics 28, 1404–1408 (2011).

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Characterization of two-threshold behavior of the emission from a GaAs microcavity

Tempel, J. S., Veit, F., Assmann, M., Kreilkamp, L. E., Rahimi-Iman, A., Loffler, A., Höfling, S., Reitzenstein, S., Worschech, L., Forchel, A. and Bayer, M.

Physical Review B 85, 075318 (2012).

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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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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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Substrate orientation dependent fine structure splitting of symmetric In(Ga)As/GaAs quantum dots

Treu, J., Schneider, C., Huggenberger, A., Braun, T., Reitzenstein, S., Höfling, S. and Kamp, M.

Applied Physics Letters 101, 022102 (2012).

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Linewidth broadening and emission saturation of a resonantly excited quantum dot monitored via an off-resonant cavity mode

Ulhaq, A., Ates, S., Weiler, S., Ulrich, S. M., Reitzenstein, S., Loffler, A., Höfling, S., Worschech, L., Forchel, A. and Michler, P.

Physical Review B 82, 045307 (2010).

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Photon statistics of semiconductor microcavity lasers

Ulrich, S. M., Gies, C., Ates, S., Wiersig, J., Reitzenstein, S., Hofmann, C., Loffler, A., Forchel, A., Jahnke, F. and Michler, P.

Physical Review Letters 98, 043906 (2007).

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Dephasing of Triplet-Sideband Optical Emission of a Resonantly Driven InAs/GaAs Quantum Dot inside a Microcavity

Ulrich, S. M., Ates, S., Reitzenstein, S., Loffler, A., Forchel, A. and Michler, P.

Physical Review Letters 106, 247402 (2011).

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Electrically driven single photon source based on a site-controlled quantum dot with self-aligned current injection

Unrau, W., Quandt, D., Schulze, J. H., Heindel, T., Germann, T. D., Hitzemann, O., Strittmatter, A., Reitzenstein, S., Pohl, U. W. and Bimberg, D.

Applied Physics Letters 101, 211119 (2012).

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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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Emission characteristics of a highly correlated system of a quantum dot coupled to two distinct micropillar cavity modes

Weiler, S., Ulhaq, A., Ulrich, S. M., Reitzenstein, S., Loffler, A., Forchel, A. and Michler, P.

Physical Review B 82, 205326 (2010).

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Highly indistinguishable photons from a quantum dot in a microcavity

Weiler, S., Ulhaq, A., Ulrich, S. M., Reitzenstein, S., Loffler, A., Forchel, A. and Michler, P.

Physica Status Solidi B-basic Solid State Physics 248, 867–871 (2011).

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Direct observation of correlations between individual photon emission events of a microcavity laser

Wiersig, J., Gies, C., Jahnke, F., Assmann, M., Berstermann, T., Bayer, M., Kistner, C., Reitzenstein, S., Schneider, C., Höfling, S., Forchel, A., Kruse, C., Kalden, J. and Hommel, D.

Nature 460, 245–U108 (2009).

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Electroluminescence from spatially confined exciton polaritons in a textured microcavity

Winkler, K., Schneider, C., Fischer, J., Rahimi-Iman, A., Amthor, M., Forchel, A., Reitzenstein, S., Höfling, S. and Kamp, M.

Applied Physics Letters 102, 041101 (2013).

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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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Negative differential conductance in planar one-dimensional/zero-dimensional/one-dimensional GaAs/AlGaAs structures

Worschech, L., Reitzenstein, S. and Forchel, A.

Applied Physics Letters 77, 3662–3664 (2000).

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1D-0D-1D transitions in GaAs/AlGaAs electron waveguides coupled by a semiconducting island

Worschech, L., Reitzenstein, S. and Forchel, A.

Physica Status Solidi B-basic Research 224, 863–865 (2001).

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Investigation of switching effects between the drains of an electron Y-branch switch

Worschech, L., Weidner, B., Reitzenstein, S. and Forchel, A.

Applied Physics Letters 78, 3325–3327 (2001).

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Coherent and ballistic switching effects in GaAs/AlGaAs nanojunctions

Worschech, L., Reitzenstein, S., Kesselring, M., Schliemann, A. and Forchel, A.

Physica E-low-dimensional Systems & Nanostructures 12, 688–690 (2002).

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Microwave rectification in ballistic nanojunctions at room temperature

Worschech, L., Schliemann, A., Reitzenstein, S., Hartmann, P. and Forchel, A.

Microelectronic Engineering 63, 217–221 (2002).

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Self-switching of branched multiterminal junctions: a ballistic half-adder

Worschech, L., Reitzenstein, S., Hartmann, P., Kaiser, S., Kamp, M. and Forchel, A.

Applied Physics Letters 83, 2462–2464 (2003).

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Optically controlled semiconductor spin qubits for quantum information processing

Yamamoto, Y., Ladd, T. D., Press, D., Clark, S., Sanaka, K., Santori, C., Fattal, D., Fu, K. M., Höfling, S., Reitzenstein, S. and Forchel, A.

Physica Scripta T137, 014010 (2009).

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Nonlinear photoluminescence spectra from a quantum-dot-cavity system: Interplay of pump-induced stimulated emission and anharmonic cavity QED

Yao, P. J., Pathak, P. K., Illes, E., Hughes, S., Munch, S., Reitzenstein, S., Franeck, P., Loffler, A., Heindel, T., Höfling, S., Worschech, L. and Forchel, A.

Physical Review B 81, 033309 (2010).

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Quantum-dot-induced phase shift in a pillar microcavity

Young, A. B., Oulton, R., Hu, C. Y., Thijssen, A. C. T., Schneider, C., Reitzenstein, S., Kamp, M., Höfling, S., Worschech, L., Forchel, A. and Rarity, J. G.

Physical Review A 84, 011803 (2011).

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Correlations of cascaded photons: An analytical study in the two-photon Mollow regime

Carmele, A., Bounouar, S., Strauß, M., Reitzenstein, S. and Knorr, A.

ArXiv e-prints , 1710.03031 (2017).

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Enhanced photon-extraction efficiency from deterministic quantum-dot microlenses

Gschrey, M., Seifried, M., Krüger, L., Schmidt, R., Schulze, J.-H., Heindel, T., Burger, S., Rodt, S., Schmidt, F., Strittmatter, A. and Reitzenstein, S.

ArXiv e-prints , 1312.6298 (2013).

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Development of Highly Homogenous Quantum Dot Micropillar Arrays for Optical Reservoir Computing

Heuser, T., Große, J., Holzinger, S., Sommer, M. M. and Reitzenstein, S.

IEEE Journal of Selected Topics in Quantum Electronics 26, 1-9 (2020).

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Thresholdless transition to coherent emission at telecom wavelengths from coaxial nanolasers

Kreinberg, S., Laiho, K., Lohof, F., Hayenga, W. E., Holewa, P., Gies, C., Khajavikhan, M. and Reitzenstein, S.

arXiv e-prints , 1905.09924 (2019).

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Performance Optimization and Real-Time Security Monitoring for Single-Photon Quantum Key Distribution

Kupko, T., Helversen, M. v., Rickert, L., Schulze, J.-H., Strittmatter, A., Gschrey, M., Rodt, S., Reitzenstein, S. and Heindel, T.

arXiv e-prints , 1908.02672 (2019).

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Excitonic complexes in MOCVD-grown GaAs-based quantum dots emitting at telecom wavelengths

Mrowiński, P., Musiał, A., Gawarecki, K., Dusanowski, Ł., Heuser, T., Srocka, N., Quandt, D., Strittmatter, A., Rodt, S., Reitzenstein, S. and Sęk, G.

ArXiv e-prints , 1811.01346 (2018).

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