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
Gallium arsenide (GaAs) quantum photonic waveguide circuits
Jianwei Wang,Alberto Santamato,Pisu Jiang,Damien Bonneau,Erman Engin,Joshua W. Silverstone,M. Lermer,Johannes Beetz,Martin Kamp,Sven Höfling,Sven Höfling,Michael G. Tanner,Chandra M. Natarajan,Robert H. Hadfield,Sander N. Dorenbos,Val Zwiller,Jeremy L. O'Brien,Mark G. Thompson +17 more
TL;DR: In this article, the gallium arsenide (GaAs) material system has been used for the manipulation of single-photon and twophoton states of light, with a visibility of 94.9 ± 1.3% and 84.4± 1.5% respectively.
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Photonic crystal cavity based gas sensor
TL;DR: In this article, the authors studied the response of a photonic crystal cavity to changes of the ambient refractive index and found a linear dependence of the resonance wavelength on the ambient gas.
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Quantum correlations of confined exciton-polaritons
TL;DR: In this article, it was shown that careful tuning of the coupled system allows for a modest photon blockade effect as evidenced by a reduction of simultaneous two-polariton generation probability by 5 %.
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Toward Scalable Boson Sampling with Photon Loss
Hui Wang,Wei Li,Xiao Jiang,Yu-Ming He,Yu-Huai Li,Xing Ding,Ming-Cheng Chen,Jian Qin,Cheng-Zhi Peng,Christian Schneider,Martin Kamp,Wenjun Zhang,H. J. Li,Lixing You,Zujian Wang,Jonathan P. Dowling,Jonathan P. Dowling,Sven Höfling,Sven Höfling,Sven Höfling,Chao-Yang Lu,Jian-Wei Pan +21 more
TL;DR: This experiment uses a quantum-dot-micropillar single-photon source demultiplexed into up to seven input ports of a 16×16 mode ultralow-loss photonic circuit, and detects three-, four- and fivefold coincidence counts, and demonstrates that boson sampling with a few photons lost can increase the sampling rate.
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Power-law decay of the spatial correlation function in exciton-polariton condensates
Georgios Roumpos,Michael Lohse,Wolfgang Hartmut Nitsche,Jonathan Keeling,Marzena H. Szymańska,Peter B. Littlewood,Andreas Löffler,Sven Höfling,Lukas Worschech,Alfred Forchel,Yoshihisa Yamamoto +10 more
TL;DR: The results indicate that Berezinskii–Kosterlitz–Thouless-like phase order survives in open-dissipative systems and to clarify the influence of external noise on spatial coherence in nonequilibrium phase transitions.