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单原子控制的光纤开关。

Fiber-optical switch controlled by a single atom.

机构信息

Vienna Center for Quantum Science and Technology, Atominstitut, Vienna University of Technology, 1020 Vienna, Austria.

出版信息

Phys Rev Lett. 2013 Nov 8;111(19):193601. doi: 10.1103/PhysRevLett.111.193601. Epub 2013 Nov 4.

Abstract

We demonstrate highly efficient switching of optical signals between two optical fibers controlled by a single atom. The key element of our experiment is a whispering-gallery-mode bottle microresonator, which is coupled to a single atom and interfaced by two tapered fiber couplers. This system reaches the strong coupling regime of cavity quantum electrodynamics, leading to a vacuum Rabi splitting in the excitation spectrum. We systematically investigate the switching efficiency of our system, i.e., the probability that the fiber-optical switch redirects the light into the desired output. We obtain a large redirection efficiency reaching a raw fidelity of more than 60% without postselection. Moreover, by measuring the second-order correlation functions of the output fields, we show that our switch exhibits a photon-number-dependent routing capability.

摘要

我们展示了通过单个原子控制,在两条光纤之间实现高效光学信号切换。我们实验的关键元件是 whispering-gallery-mode 瓶微谐振器,它与单个原子耦合,并通过两个锥形光纤耦合器进行接口。该系统达到了腔量子电动力学的强耦合状态,导致激发谱中的真空拉比分裂。我们系统地研究了我们系统的切换效率,即光纤开关将光重新引导到所需输出的概率。我们获得了很大的重定向效率,未经后选择即可达到超过 60%的原始保真度。此外,通过测量输出场的二阶相关函数,我们表明我们的开关具有依赖光子数的路由能力。

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