论文标题

硅量子光子学的进步

Advances in silicon quantum photonics

论文作者

Adcock, Jeremy C., Bao, Jueming, Chi, Yulin, Chen, Xiaojiong, Bacco, Davide, Gong, Qihuang, Oxenløwe, Leif K., Wang, Jianwei, Ding, Yunhong

论文摘要

量子技术有望使人类的计算,通信和传感能力变化。光子是量子信息的载体必不可少的 - 它们以最快的速度传播,并且很容易保护免受脱碳的影响。但是,该系统需要数千个具有超低延迟控制的近透明组件。要实施量子技术,需要一个新的范式光子系统:一个具有内置连贯性,稳定性,定义任意电路的能力以及可制造性的途径。硅光子学具有无与伦比的密度和成分性能,通过CMOS兼容制造,将其放置在可扩展的量子光子平台的强度位置。本文是关于硅量子光子学的一份进度报告,其重点是过去五年的发展。我们提供了有关硅量子光子组件和该领域挑战的介绍,总结了当前的最新技术,并确定了出色的技术挑战,以及未来研究的有希望的途径。我们还解决了在集成的量子光子实验中的洪 - 曼德尔干扰可见性的定义中的冲突,这是在不同平台之间进行公平比较光子质量所需的。我们的目的是在平台上的可扩展性开发,我们指向了封闭式集成的道路,朝着芯片上的硅量子光子系统。

Quantum technology is poised to enable a step change in human capability for computing, communications and sensing. Photons are indispensable as carriers of quantum information - they travel at the fastest possible speed and readily protected from decoherence. However, the system requires thousands of near-transparent components with ultra-low-latency control. For quantum technology to be implemented, a new paradigm photonic system is required: one with in-built coherence, stability, the ability to define arbitrary circuits, and a path to manufacturability. Silicon photonics has unparalleled density and component performance, which, with CMOS compatible fabrication, place it in a strong position for a scalable quantum photonics platform. This paper is a progress report on silicon quantum photonics, focused on developments in the past five years. We provide an introduction on silicon quantum photonic component and the challenges in the field, summarise the current state-of-the-art and identify outstanding technical challenges, as well as promising avenues of future research. We also resolve a conflict in the definition of Hong-Ou-Mandel interference visibility in integrated quantum photonic experiments, needed for fair comparison of photon quality across different platforms. Our aim is the development of scalability on the platform, to which end we point the way to ever-closer integration, toward silicon quantum photonic systems-on-a-chip.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源