Building an integrated quantum photonics platform on silicon for ultra-secure communications

S. Olivier, C. Sciancalepore, H. E. Dirani, Q. Wilmart, Raouia Rhazi, E. Monroy, J. Gerard, D. Bacco, F. Sabattoli, M. Galli, D. Bajoni, J. Rothman
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Abstract

Silicon photonics based on CMOS technology is a very attractive platform to build compact, low-cost and scalable quantum photonics integrated circuits addressing the requirements of quantum key distribution protocols. We show record low propagation losses below 0.5 dB/cm and below 0.05 dB/cm for silicon and silicon nitride waveguides respectively. We will present our results on integrated components such as hybrid III-V on silicon lasers for weak coherent pulse generation, high-quality microresonators for entangled photon pair generation and we will show our recent developments on high crystalline quality NbN thin films with improved critical temperature for waveguide-integrated superconducting single photon detectors.
在硅上构建集成量子光子学平台,用于超安全通信
基于CMOS技术的硅光子学是一个非常有吸引力的平台,可以构建紧凑、低成本和可扩展的量子光子集成电路,解决量子密钥分发协议的要求。我们发现硅波导和氮化硅波导的传输损耗分别低于0.5 dB/cm和0.05 dB/cm。我们将展示我们在集成组件方面的研究成果,如用于弱相干脉冲产生的混合III-V硅激光器,用于纠缠光子对产生的高质量微谐振器,以及我们在用于波导集成超导单光子探测器的高晶体质量NbN薄膜方面的最新进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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