Atom-light interactions using optical nanofibres - A perspective

Wenfang Li, Dylan Brown, A. Vylegzhanin, Zohreh Shahrabifarahani, Aswathy B. Raj, Jinjin Du, S. Nic Chormaic
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Abstract

Complete control of light-matter interactions at a single quantum level is critical for quantum science applications such as precision measurement and information processing. Nanophotonic devices, developed with recent advancements in nanofabrication techniques, can be used to tailor the interactions between single photons and atoms. One example of such a nanophotonic device is the optical nanofibre, which provides an excellent platform due to the strongly confined transverse light fields, long interaction length, low loss, and diverse optical modes. This facilitates a strong interaction between atoms and guided light, revealing chiral atom-light processes and the prospect of waveguide quantum electrodynamics. This paper highlights recent advances, experimental techniques, and future perspectives of the optical nanofibre-atom hybrid quantum platform.
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使用光学纳米纤维进行原子-光相互作用--透视
在单量子水平上完全控制光与物质之间的相互作用,对于量子科学应用(如精确测量和信息处理)至关重要。随着纳米制造技术的不断进步,纳米光子器件可用于定制单光子与原子之间的相互作用。这种纳米光子器件的一个例子是光学纳米纤维,由于其具有强约束横向光场、长相互作用长度、低损耗和多种光学模式,因此提供了一个极好的平台。这有利于原子与引导光之间的强相互作用,揭示手性原子-光过程以及波导量子电动力学的前景。本文重点介绍了光学纳米纤维-原子混合量子平台的最新进展、实验技术和未来展望。
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