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具有高亮度和不可区分性的相干和非相干泵浦电信C波段单光子源。

Coherently and Incoherently Pumped Telecom C-Band Single-Photon Source with High Brightness and Indistinguishability.

作者信息

Joos Raphael, Bauer Stephanie, Rupp Christian, Kolatschek Sascha, Fischer Wolfgang, Nawrath Cornelius, Vijayan Ponraj, Sittig Robert, Jetter Michael, Portalupi Simone L, Michler Peter

机构信息

Institut für Halbleiteroptik und Funktionelle Grenzflächen, Center for Integrated Quantum Science and Technology (IQST) and SCoPE, University of Stuttgart, Allmandring 3, 70569 Stuttgart, Germany.

出版信息

Nano Lett. 2024 Jul 17;24(28):8626-8633. doi: 10.1021/acs.nanolett.4c01813. Epub 2024 Jul 8.

Abstract

Long-range, terrestrial quantum networks require high-brightness single-photon sources emitting in the telecom C-band for maximum transmission rates. For solid-state quantum emitters, the underlying pumping process, i.e., coherent or incoherent excitation schemes, impacts several photon properties such as photon indistinguishability, single-photon purity, and photon number coherence. These properties play a major role in quantum communication applications, the latter in particular for quantum cryptography. Here, we present a versatile telecom C-band single-photon source that is operated coherently and incoherently using two complementary pumping schemes. The source is based on a quantum dot coupled to a circular Bragg grating cavity, whereas coherent (incoherent) operation is performed via the novel SUPER scheme (phonon-assisted excitation). In this way, high end-to-end-efficiencies (η) of 5.36% (6.09%) are achieved simultaneously with a small multiphoton contribution (0) of 0.076 ± 0.001 [(0) of 0.069 ± 0.001] for coherent (incoherent) operation.

摘要

远程地面量子网络需要在电信C波段发射的高亮度单光子源,以实现最大传输速率。对于固态量子发射器,其潜在的泵浦过程,即相干或非相干激发方案,会影响几个光子特性,如光子不可区分性、单光子纯度和光子数相干性。这些特性在量子通信应用中起着重要作用,尤其是在量子密码学中。在这里,我们展示了一种通用的电信C波段单光子源,它使用两种互补的泵浦方案进行相干和非相干操作。该源基于耦合到圆形布拉格光栅腔的量子点,而相干(非相干)操作通过新颖的SUPER方案(声子辅助激发)进行。通过这种方式,对于相干(非相干)操作,同时实现了5.36%(6.09%)的高端到端效率(η)以及0.076±0.001 [0.069±0.001]的小多光子贡献(0)。

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引用本文的文献

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Solid-state single-photon sources operating in the telecom wavelength range.
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