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Publikationen

2010

Single photon emission from positioned GaAs/AlGaAs photonic nanowires

Heinrich, J., Huggenberger, A., Heindel, T., Reitzenstein, S., Höfling, S., Worschech, L. and Forchel, A.

Applied Physics Letters 96, 211117 (2010).

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Strong coupling in a quantum dot micropillar system under electrical current injection

Kistner, C., Morgener, K., Reitzenstein, S., Schneider, C., Höfling, S., Worschech, L., Forchel, A., Yao, P. and Hughes, S.

Applied Physics Letters 96, 221102 (2010).

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Quantum efficiency and oscillator strength of site-controlled InAs quantum dots

Albert, F., Stobbe, S., Schneider, C., Heindel, T., Reitzenstein, S., Höfling, S., Lodahl, P., Worschech, L. and Forchel, A.

Applied Physics Letters 96, 151102 (2010).

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Ultrafast tracking of second-order photon correlations in the emission of quantum-dot microresonator lasers

Assmann, M., Veit, F., Bayer, M., Gies, C., Jahnke, F., Reitzenstein, S., Höfling, S., Worschech, L. and Forchel, A.

Physical Review B 81, 165314 (2010).

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Up on the Jaynes-Cummings ladder of a quantum-dot/microcavity system

Kasprzak, J., Reitzenstein, S., Muljarov, E. A., Kistner, C., Schneider, C., Strauss, M., Höfling, S., Forchel, A. and Langbein, W.

Nature Materials 9, 304–308 (2010).

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Intrinsic feedback and bistable switching in Y-branched nanojunctions

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

Physical Review B 81, 153411 (2010).

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Time-resolved photoluminescence investigations on HfO2-capped InP nanowires

Munch, S., Reitzenstein, S., Borgstrom, M., Thelander, C., Samuelson, L., Worschech, L. and Forchel, A.

Nanotechnology 21, 105711 (2010).

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Whispering gallery mode lasing in high quality GaAs/AlAs pillar microcavities

Jaffrennou, P., Claudon, J., Bazin, M., Malik, N. S., Reitzenstein, S., Worschech, L., Kamp, M., Forchel, A. and Gerard, J. M.

Applied Physics Letters 96, 071103 (2010).

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Electrically driven quantum dot-micropillar single photon source with 34% overall efficiency

Heindel, T., Schneider, C., Lermer, M., Kwon, S. H., Braun, T., Reitzenstein, S., Höfling, S., Kamp, M. and Forchel, A.

Applied Physics Letters 96, 011107 (2010).

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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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2009

Non-resonant dot-cavity coupling and its potential for resonant single-quantum-dot spectroscopy

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

Nature Photonics 3, 724–728 (2009).

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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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Post-Selected Indistinguishable Photons from the Resonance Fluorescence of a Single Quantum Dot in a Microcavity

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

Physical Review Letters 103, 167402 (2009).

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Semiconductor Cavity Quantum Electrodynamics with Single Quantum Dots

Reitzenstein, S., Schneider, C., Munch, S., Kistner, C., Strauss, M., Huggenberger, A., Franeck, P., Weinmann, P., Kamp, M., Höfling, S., Worschech, L. and Forchel, A.

Acta Physica Polonica A 116, 445–450 (2009).

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Single site-controlled In(Ga)As/GaAs quantum dots: growth, properties and device integration

Schneider, C., Huggenberger, A., Sunner, T., Heindel, T., Strauss, M., Gopfert, S., Weinmann, P., Reitzenstein, S., Worschech, L., Kamp, M., Höfling, S. and Forchel, A.

Nanotechnology 20, 434012 (2009).

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Control of the Strong Light-Matter Interaction between an Elongated In0.3Ga0.7As Quantum Dot and a Micropillar Cavity Using External Magnetic Fields

Reitzenstein, S., Munch, S., Franeck, P., Rahimi-Iman, A., Loffler, A., Höfling, S., Worschech, L. and Forchel, A.

Physical Review Letters 103, 127401 (2009).

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The role of optical excitation power on the emission spectra of a strongly coupled quantum dot-micropillar system

Munch, S., Reitzenstein, S., Franeck, P., Loffler, A., Heindel, T., Höfling, S., Worschech, L. and Forchel, A.

Optics Express 17, 12821–12828 (2009).

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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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Resonantly probing micropillar cavity modes by photocurrent spectroscopy

Kistner, C., Reitzenstein, S., Schneider, C., Höfling, S. and Forchel, A.

Applied Physics Letters 94, 221103 (2009).

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Single photon emission from a site-controlled quantum dot-micropillar cavity system

Schneider, C., Heindel, T., Huggenberger, A., Weinmann, P., Kistner, C., Kamp, M., Reitzenstein, S., Höfling, S. and Forchel, A.

Applied Physics Letters 94, 111111 (2009).

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Optically pumped lasing from a single pillar microcavity with InGaAs/GaAs quantum well potential fluctuation quantum dots

Seak, G., Podemski, P., Misiewicz, J., Reitzenstein, S., Reithmaier, J. P. and Forchel, A.

Journal of Applied Physics 105, 053513 (2009).

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Oscillatory variations in the Q factors of high quality micropillar cavities

Reitzenstein, S., Gregersen, N., Kistner, C., Strauss, M., Schneider, C., Pan, L., Nielsen, T. R., Höfling, S., Mork, J. and Forchel, A.

Applied Physics Letters 94, 061108 (2009).

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Single quantum dot controlled gain modulation in high-Q micropillar lasers

Reitzenstein, S., Bockler, C., Bazhenov, A., Gorbunov, A., Munch, S., Loffler, A., Kamp, M., Kulakovskii, V. D. and Forchel, A.

Physica Status Solidi B-basic Solid State Physics 246, 277–282 (2009).

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2008

Influence of the spontaneous optical emission factor beta on the first-order coherence of a semiconductor microcavity laser

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

Physical Review B 78, 155319 (2008).

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Demonstration of strong coupling via electro-optical tuning in high-quality QD-micropillar systems

Kistner, C., Heindel, T., Schneider, C., Rahimi-Iman, A., Reitzenstein, S., Höfling, S. and Forchel, A.

Optics Express 16, 15006–15012 (2008).

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Low threshold electrically pumped quantum dot-micropillar lasers

Reitzenstein, S., Heindel, T., Kistner, C., Rahimi-Iman, A., Schneider, C., Höfling, S. and Forchel, A.

Applied Physics Letters 93, 061104 (2008).

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Recombination dynamics in wurtzite InP nanowires

Crankshaw, S., Reitzenstein, S., Chuang, L. C., Moewe, M., Munch, S., Bockler, C., Forchel, A. and Chang-Hasnain, C.

Physical Review B 77, 235409 (2008).

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Lithographic alignment to site-controlled quantum dots for device integration

Schneider, C., Strauss, M., Sunner, T., Huggenberger, A., Wiener, D., Reitzenstein, S., Kamp, M., Höfling, S. and Forchel, A.

Applied Physics Letters 92, 183101 (2008).

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Electrically driven high-Q quantum dot-micropillar cavities

Bockler, C., Reitzenstein, S., Kistner, C., Debusmann, R., Loeffler, A., Kida, T., Höfling, S., Forchel, A., Grenouillet, L., Claudon, J. and Gerard, J. M.

Applied Physics Letters 92, 091107 (2008).

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Single quantum dot controlled lasing effects in high-Q micropillar cavities

Reitzenstein, S., Bockler, C., Bazhenov, A., Gorbunov, A., Loffler, A., Kamp, M., Kulakovskii, V. D. and Forchel, A.

Optics Express 16, 4848–4857 (2008).

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