S
Sven Höfling
Researcher at University of Würzburg
Publications - 915
Citations - 25038
Sven Höfling is an academic researcher from University of Würzburg. The author has contributed to research in topics: Quantum dot & Photon. The author has an hindex of 67, co-authored 870 publications receiving 20424 citations. Previous affiliations of Sven Höfling include University of Science and Technology of China & Conrad Hotels.
Papers
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Journal ArticleDOI
Transient optical parametric oscillations in resonantly pumped multistable cavity polariton condensates
A. S. Brichkin,Sergei G. Tikhodeev,S. S. Gavrilov,Nikolay A. Gippius,S. I. Novikov,A. V. Larionov,C. Schneider,Martin Kamp,Sven Höfling,Sven Höfling,V. D. Kulakovskii +10 more
TL;DR: In this paper, the transition between the steady states of a no-equilibrium polariton condensate was investigated in a low-symmetry high-Q$ microcavity under resonant optical excitation at normal incidence.
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Mode-Controlled Tapered Lasers Based on Quantum Dots
P. Weinmann,C. Zimmermann,T. W. Schlereth,C. Schneider,Sven Höfling,Martin Kamp,Alfred Forchel +6 more
TL;DR: In this paper, a distributed Bragg reflector was used as a wavelength-selective element for tapered quantum dot (QD) laser devices with 1.4mm-long tapers.
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Excitonic complexes in InGaAs/GaAs quantum dash structures
Anna Musiał,Grzegorz Sęk,P. Podemski,Marcin Syperek,Jan Misiewicz,Andreas Löffler,Sven Höfling,Alfred Forchel +7 more
TL;DR: In this paper, the excitation power dependent measurements together with the rate equation model calculations enable to identify the excitonic and biexcitonic emission from one quantum dash.
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Resonance fluorescence from an atomic-quantum-memory compatible single photon source based on GaAs droplet quantum dots
Laxmi Narayan Tripathi,Laxmi Narayan Tripathi,Yu-Ming He,Ł. Dusanowski,Piotr Andrzej Wroński,Chao-Yang Lu,Christian Schneider,Sven Höfling,Sven Höfling,Sven Höfling +9 more
TL;DR: In this paper, a single photon source was shown to emit single photons on resonance with the Rb-87-D2 line (780 nm) under continuous wave resonant excitation conditions.
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High quality factor GaAs microcavity with buried bullseye defects
K. Winkler,Niels Gregersen,Teppo Häyrynen,B. Bradel,Anne Schade,Monika Emmerling,Martin Kamp,Sven Höfling,Sven Höfling,Christian Schneider +9 more
TL;DR: In this paper, a new kind of solid-state vertical microcavity, which allows for confinement of the electromagnetic field in the lateral direction without deep etching, is presented.