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Publikationen

A

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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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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Directional Emission of a Deterministically Fabricated Quantum Dot-Bragg Reflection Multimode Waveguide System

Mrowiński, P., Schnauber, P., Gutsche, P., Kaganskiy, A., Schall, J., Burger, S., Rodt, S. and Reitzenstein, S.

ACS Photonics , (2019).

ArXiv e-prints 1902.01905.

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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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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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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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On-Chip Quantum Optics with Quantum Dot Microcavities

Stock, E., Albert, F., Hopfmann, C., Lermer, M., Schneider, C., Höfling, S., Forchel, A., Kamp, M. and Reitzenstein, S.

Advanced Materials 25, 707–710 (2013).

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Physics and Applications of High-β Micro- and Nanolasers

Deng, H., Lippi, G. L., Mørk, J., Wiersig, J. and Reitzenstein, S.

Advanced Optical Materials n/a, 2100415 (2021).

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Plug and Play Fiber-Coupled 73 kHz Single-Photon Source Operating in the Telecom O-Band

Musiał, A., Żołnacz, K., Srocka, N., Kravets, O., Große, J., Olszewski, J., Poturaj, K., Wójcik, G., Mergo, P., Dybka, K., Dyrkacz, M., Dłubek, M., Lauritsen, K., Bülter, A., Schneider, P.-I., Zschiedrich, L., Burger, S., Rodt, S., Urbańczyk, W., Sęk, G. and Reitzenstein, S.

Advanced Quantum Technologies , 2000018 (2020).

ArXiv e-prints 1912.10351.

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Front Cover: Plug and Play Fiber-Coupled 73 kHz Single-Photon Source Operating in the Telecom O-Band (Adv. Quantum Technol. 6/2020)

Musiał, A., Żołnacz, K., Srocka, N., Kravets, O., Große, J., Olszewski, J., Poturaj, K., Wójcik, G., Mergo, P., Dybka, K., Dyrkacz, M., Dłubek, M., Lauritsen, K., Bülter, A., Schneider, P.-I., Zschiedrich, L., Burger, S., Rodt, S., Urbańczyk, W., Sęk, G. and Reitzenstein, S.

Advanced Quantum Technologies 3, 2070061 (2020).

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Bright Electrically Controllable Quantum-Dot-Molecule Devices Fabricated by In Situ Electron-Beam Lithography

Schall, J., Deconinck, M., Bart, N., Florian, M., von Helversen, M., Dangel, C., Schmidt, R., Bremer, L., Bopp, F., Hüllen, I., Gies, C., Reuter, D., Wieck, A. D., Rodt, S., Finley, J. J., Jahnke, F., Ludwig, A. and Reitzenstein, S.

Advanced Quantum Technologies 4, 2100002 (2021).

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Front Cover: Bright Electrically Controllable Quantum-Dot-Molecule Devices Fabricated by In Situ Electron-Beam Lithography (Adv. Quantum Technol. 6/2021)

Schall, J., Deconinck, M., Bart, N., Florian, M., von Helversen, M., Dangel, C., Schmidt, R., Bremer, L., Bopp, F., Hüllen, I., Gies, C., Reuter, D., Wieck, A. D., Rodt, S., Finley, J. J., Jahnke, F., Ludwig, A. and Reitzenstein, S.

Advanced Quantum Technologies 4, 2170061 (2021).

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Cesium-Vapor-Based Delay of Single Photons Emitted by Deterministically Fabricated Quantum Dot Microlenses

Bremer, L., Fischbach, S., Park, S.-I., Rodt, S., Song, J.-D., Heindel, T. and Reitzenstein, S.

Advanced Quantum Technologies , 1900071 (2019).

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Enhanced photon-extraction efficiency from InGaAs/GaAs quantum dots in deterministic photonic structures at 1.3 μm fabricated by in-situ electron-beam lithography

Srocka, N., Musiał, A., Schneider, P.-I., Mrowiński, P., Holewa, P., Burger, S., Quandt, D., Strittmatter, A., Rodt, S., Reitzenstein, S. and Sęk, G.

AIP Advances 8, 085205 (2018).

ArXiv e-prints 1805.00624.

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High-Q whispering gallery modes in pillar microcavities

Nowicki-Bringuier, Y. R., Claudon, J., Bockler, C., Reitzenstein, S., Kamp, M., Forchel, A. and Gerard, J. M.

Annales De Physique 32, 123–126 (2007).

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Development of site-controlled quantum dot arrays acting as scalable sources of indistinguishable photons

Große, J., von Helversen, M., Koulas-Simos, A., Hermann, M. and Reitzenstein, S.

APL Photonics 5, 096107 (2020).

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Quantum dot single-photon emission coupled into single-mode fibers with 3D printed micro-objectives

Bremer, L., Weber, K., Fischbach, S., Thiele, S., Schmidt, M., Kaganskiy, A., Rodt, S., Herkommer, A., Sartison, M., Portalupi, S. L., Michler, P., Giessen, H. and Reitzenstein, S.

APL Photonics 5, 106101 (2020).

ArXiv e-prints 2005.11198v1.

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Spectral control of deterministically fabricated quantum dot waveguide systems using the quantum confined Stark effect

Schnauber, P., Große, J., Kaganskiy, A., Ott, M., Anikin, P., Schmidt, R., Rodt, S. and Reitzenstein, S.

APL Photonics 6, 050801 (2021).

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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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Accessing the dark exciton spin in deterministic quantum-dot microlenses

Heindel, T., Thoma, A., Schwartz, I., Schmidgall, E. R., Gantz, L., Cogan, D., Strauß, M., Schnauber, P., Gschrey, M., Schulze, J.-H., Strittmatter, A., Rodt, S., Gershoni, D. and Reitzenstein, S.

APL Photonics 2, 121303 (2017).

ArXiv e-prints 1706.05164.

Featured Headliner | Press Release: https://publishing.aip.org/publishing/journal-highlights/using-dark-side-excitons-quantum-computing

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Fabrication of dense diameter-tuned quantum dot micropillar arrays for applications in photonic information processing

Heuser, T., Große, J., Kaganskiy, A., Brunner, D. and Reitzenstein, S.

APL Photonics 3, 116103 (2018).

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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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Interplay between emission wavelength and s-p splitting in MOCVD-grown InGaAs/GaAs quantum dots emitting above 1.3 μm

Podemski, P., Musiał, A., Gawarecki, K., Maryński, A., Gontar, P., Bercha, A., Trzeciakowski, W. A., Srocka, N., Heuser, T., Quandt, D., Strittmatter, A., Rodt, S., Reitzenstein, S. and Sęk, G.

Applied Physics Letters 116, 023102 (2020).

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Deterministically fabricated quantum dot single-photon source emitting indistinguishable photons in the telecom O-band

Srocka, N., Mrowiński, P., Große, J., von Helversen, M., Heindel, T., Rodt, S. and Reitzenstein, S.

Applied Physics Letters 116, 231104 (2020).

ArXiv e-prints 2004.04584v1.

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Deterministically fabricated strain-tunable quantum dot single-photon sources emitting in the telecom O-band

Srocka, N., Mrowiński, P., Große, J., Schmidt, M., Rodt, S. and Reitzenstein, S.

Applied Physics Letters 117, 224001 (2020).

ArXiv e-prints 2009.12543.

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Quantum efficiency and oscillator strength of InGaAs quantum dots for single-photon sources emitting in the telecommunication O-band

Große, J., Mrowiński, P., Srocka, N. and Reitzenstein, S.

Applied Physics Letters 119, 061103 (2021).

ArXiv e-prints 2106.05351.

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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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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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