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Efficient Single-Photon Coupling from a Nitrogen-Vacancy Center Embedded in a Diamond Nanowire Utilizing an Optical Nanofiber

机译:利用光学纳米纤维从嵌入金刚石纳米线中的氮空位中心进行有效的单光子耦合。

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摘要

Nitrogen-Vacancy (NV) centers in diamond are promising solid-state quantum emitters that can be utilized for photonic quantum applications. Various diamond nanophotonic devices have been fabricated for efficient extraction of single photons emitted from NV centers to a single guided mode. However, for constructing scalable quantum networks, further efficient coupling of single photons to a guided mode of a single-mode fiber (SMF) is indispensable and a difficult challenge. Here, we propose a novel efficient hybrid system between an optical nanofiber and a cylindrical-structured diamond nanowire. The maximum coupling efficiency as high as 75% for the sum of both fiber ends is obtained by numerical simulations. The proposed hybrid system will provide a simple and efficient interface between solid-state quantum emitters and a SMF suitable for constructing scalable quantum networks.
机译:金刚石中的氮空位(NV)中心是有前途的固态量子发射器,可用于光子量子应用。已经制造出各种金刚石纳米光子器件,以有效地将从NV中心发射的单个光子提取到单个引导模式。但是,对于构建可伸缩的量子网络,将单光子进一步有效耦合到单模光纤(SMF)的引导模式是必不可少的,也是一项艰巨的挑战。在这里,我们提出了一种在光学纳米纤维和圆柱状结构的金刚石纳米线之间的新型高效混合系统。通过数值模拟获得了光纤两端总和的最大耦合效率高达75%。提出的混合系统将在固态量子发射器和适合构建可伸缩量子网络的SMF之间提供简单有效的接口。

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