Nanowire antennas embedding single quantum dots: towards the emission of indistinguishable photons

J. Claudon, S. Kotal, A. Artioli, M. Finazzer, R. Fons, Y. Genuist, Joël Bleuse, J. Gerard, Y. Wang, A. D. Osterkryger, N. Gregersen, M. Munsch, A. Kuhlmann, D. Cadeddu, M. Poggio, R. W. Warburton, P. Verlot
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引用次数: 1

Abstract

Nanowire antennas embedding a single semiconductor quantum dot (QD) represent an appealing solid-state platform for photonic quantum technologies. We present recent work aiming at generating indistinguishable photons with this system. We first investigate decoherence channels that spectrally broaden the QD emission, and discuss in particular the impact of nanowire thermal vibrations. We also develop nanowire optical nanocavities, which provide a large acceleration of the QD spontaneous emission, so that it becomes less sensitive to environmental noises.
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嵌入单量子点的纳米线天线:朝向发射难以区分的光子
嵌入单个半导体量子点(QD)的纳米线天线为光子量子技术提供了一个极具吸引力的固态平台。我们介绍了最近的工作,旨在用该系统产生不可区分的光子。我们首先研究了在光谱上拓宽量子点发射的退相干通道,并特别讨论了纳米线热振动的影响。我们还开发了纳米线光学纳米腔,它提供了很大的量子点自发发射加速度,使其对环境噪声的敏感性降低。
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