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基于氮化硅微环谐振器的高速率光子对与序列时间-bin纠缠

High-rate photon pairs and sequential Time-Bin entanglement with SiN microring resonators.

作者信息

Samara Farid, Martin Anthony, Autebert Claire, Karpov Maxim, Kippenberg Tobias J, Zbinden Hugo, Thew Rob

出版信息

Opt Express. 2019 Jul 8;27(14):19309-19318. doi: 10.1364/OE.27.019309.

Abstract

Integrated photonics is increasing in importance for compact, robust, and scalable enabling quantum technologies. This is particularly interesting for developing quantum communication networks, where resources need to be deployed in the field. We exploit photonic chip-based SiN microring resonators to realise a photon pair source with low-loss, high-noise suppression and coincidence rates of 80×10 s. A simple photonic noise characterisation technique is presented that distinguishes linear and nonlinear contributions useful for system design and optimisation. We then demonstrate an all-fiber 750 MHz clock-rate sequential Time-Bin entanglement scheme with raw interference visibilities > 98 %.

摘要

集成光子学对于紧凑、稳健且可扩展的量子技术愈发重要。这对于开发量子通信网络尤为有趣,因为在该网络中资源需要在现场进行部署。我们利用基于光子芯片的氮化硅微环谐振器来实现一个具有低损耗、高噪声抑制以及80×10⁶每秒符合率的光子对源。本文提出了一种简单的光子噪声表征技术,该技术可区分对系统设计和优化有用的线性和非线性贡献。然后,我们展示了一种全光纤750兆赫兹时钟速率的序列时间-光量子比特纠缠方案,其原始干涉可见度大于98%。

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