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Publikationen

2012

Directional whispering gallery mode emission from Limacon-shaped electrically pumped quantum dot micropillar lasers

Albert, F., Hopfmann, C., Eberspacher, A., Arnold, F., Emmerling, M., Schneider, C., Höfling, S., Forchel, A., Kamp, M., Wiersig, J. and Reitzenstein, S.

Applied Physics Letters 101, 021116 (2012).

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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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Multiexcitonic emission from single elongated InGaAs/GaAs quantum dots

Dusanowski, L., Sek, G., Musial, A., Podemski, P., Misiewicz, J., Loffler, A., Höfling, S., Reitzenstein, S. and Forchel, A.

Journal of Applied Physics 111, 063522 (2012).

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AlGaInAs quantum dot solar cells: tailoring quantum dots for intermediate band formation

Schneider, C., Kremling, S., Tarakina, N. V., Braun, T., Adams, M., Lermer, M., Reitzenstein, S., Worschech, L., Kamp, M., Höfling, S. and Forchel, A.

Semiconductor Science and Technology 27, 032002 (2012).

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Microcavity enhanced single photon emission from an electrically driven site-controlled quantum dot

Schneider, C., Heindel, T., Huggenberger, A., Niederstrasser, T. A., Reitzenstein, S., Forchel, A., Höfling, S. and Kamp, M.

Applied Physics Letters 100, 091108 (2012).

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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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Bloch-Wave Engineering of Quantum Dot Micropillars for Cavity Quantum Electrodynamics Experiments

Lermer, M., Gregersen, N., Dunzer, F., Reitzenstein, S., Höfling, S., Mork, J., Worschech, L., Kamp, M. and Forchel, A.

Physical Review Letters 108, 057402 (2012).

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Room temperature, continuous wave lasing in microcylinder and microring quantum dot laser diodes

Munsch, M., Claudon, J., Malik, N. S., Gilbert, K., Grosse, P., Gerard, J. M., Albert, F., Langer, F., Schlereth, T., Pieczarka, M. M., Höfling, S., Kamp, M., Forchel, A. and Reitzenstein, S.

Applied Physics Letters 100, 031111 (2012).

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Density and size control of InP/GaInP quantum dots on GaAs substrate grown by gas source molecular beam epitaxy

Rodel, R., Bauer, A., Kremling, S., Reitzenstein, S., Höfling, S., Kamp, M., Worschech, L. and Forchel, A.

Nanotechnology 23, 015605 (2012).

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2011

Temperature Dependence of Photoluminescence from Epitaxial InGaAs/GaAs Quantum Dots with High Lateral Aspect Ratio

Musial, A., Sek, G., Marynski, A., Podemski, P., Misiewicz, J., Loffler, A., Höfling, S., Reitzenstein, S., Reithmaier, J. P. and Forchel, A.

Acta Physica Polonica A 120, 883–887 (2011).

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Electrically Driven Quantum Dot Micropillar Light Sources

Reitzenstein, S., Heindel, T., Kistner, C., Albert, F., Braun, T., Hopfmann, C., Mrowinski, P., Lermer, M., Schneider, C., Höfling, S., Kamp, M. and Forchel, A.

Ieee Journal of Selected Topics In Quantum Electronics 17, 1670–1680 (2011).

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Zeeman splitting and diamagnetic shift of spatially confined quantum-well exciton polaritons in an external magnetic field

Rahimi-Iman, A., Schneider, C., Fischer, J., Holzinger, S., Amthor, M., Höfling, S., Reitzenstein, S., Worschech, L., Kamp, M. and Forchel, A.

Physical Review B 84, 165325 (2011).

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Properties of GaN Nanowires Grown by Molecular Beam Epitaxy

Geelhaar, L., Cheze, C., Jenichen, B., Brandt, O., Pfuller, C., Munch, S., Rothemund, R., Reitzenstein, S., Forchel, A., Kehagias, T., Komninou, P., Dimitrakopulos, G. P., Karakostas, T., Lari, L., Chalker, P. R., Gass, M. H. and Riechert, H.

Ieee Journal of Selected Topics In Quantum Electronics 17, 878–888 (2011).

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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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Observing chaos for quantum-dot microlasers with external feedback

Albert, F., Hopfmann, C., Reitzenstein, S., Schneider, C., Höfling, S., Worschech, L., Kamp, M., Kinzel, W., Forchel, A. and Kanter, I.

Nature Communications 2, 366 (2011).

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Observation of Non-Markovian Dynamics of a Single Quantum Dot in a Micropillar Cavity

Madsen, K. H., Ates, S., Lund-Hansen, T., Loffler, A., Reitzenstein, S., Forchel, A. and Lodahl, P.

Physical Review Letters 106, 233601 (2011).

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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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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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In-plane manipulation of quantum dots in high quality laterally contacted micropillar cavities

Beetz, J., Kistner, C., Lermer, M., Schneider, C., Reitzenstein, S., Höfling, S., Kamp, M. and Forchel, A.

Applied Physics Letters 98, 191111 (2011).

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Site-controlled In(Ga)As/GaAs quantum dots for integration into optically and electrically operated devices

Huggenberger, A., Schneider, C., Drescher, C., Heckelmann, S., Heindel, T., Reitzenstein, S., Kamp, M., Höfling, S., Worschech, L. and Forchel, A.

Journal of Crystal Growth 323, 194–197 (2011).

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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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Narrow spectral linewidth from single site-controlled In(Ga)As quantum dots with high uniformity

Huggenberger, A., Heckelmann, S., Schneider, C., Höfling, S., Reitzenstein, S., Worschech, L., Kamp, M. and Forchel, A.

Applied Physics Letters 98, 131104 (2011).

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From polariton condensates to highly photonic quantum degenerate states of bosonic matter

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

Proceedings of the National Academy of Sciences of the United States of America 108, 1804–1809 (2011).

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2010

Polarization-dependent strong coupling in elliptical high-Q micropillar cavities

Reitzenstein, S., Bockler, C., Loffler, A., Höfling, S., Worschech, L., Forchel, A., Yao, P. and Hughes, S.

Physical Review B 82, 235313 (2010).

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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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Numerical and Experimental Study of the Q Factor of High-Q Micropillar Cavities

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

Ieee Journal of Quantum Electronics 46, 1470–1483 (2010).

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Whispering gallery mode lasing in electrically driven quantum dot micropillars

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

Applied Physics Letters 97, 101108 (2010).

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Exciton spin state mediated photon-photon coupling in a strongly coupled quantum dot microcavity system

Reitzenstein, S., Munch, S., Franeck, P., Loffler, A., Höfling, S., Worschech, L., Forchel, A., Ponomarev, I. V. and Reinecke, T. L.

Physical Review B 82, 121306 (2010).

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Direct comparison of catalyst-free and catalyst-induced GaN nanowires

Cheze, C., Geelhaar, L., Brandt, O., Weber, W. M., Riechert, H., Munch, S., Rothemund, R., Reitzenstein, S., Forchel, A., Kehagias, T., Komninou, P., Dimitrakopulos, G. P. and Karakostas, T.

Nano Research 3, 528–536 (2010).

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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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