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Solid-state devices for single-photon generation

机译:用于单光子生成的固态设备

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摘要

General requirements for single-photon devices in various applications are presented and compared with experimental progress to date. The quantum information applications that currently appear the most promising require a matter qubit-enabled single-photon source, where the emitted photon state is linked to the state of a long-lived quantum system such as an electron spin. The nitrogen-vacancy center in diamond is a promising solid-state system for realizing such a device due to its long-lived electron spin coherence, optical addressability, and ability to couple to a manageable number of nuclear spins. This system is discussed in detail, and experimental results from our laboratory are shown. A critical component of such a device is an optical microcavity to enhance the coupling between the nitrogen-vacancy center and a single photon, and we discuss theoretically the requirements for achieving this enhancement.
机译:提出了在各种应用中对单光子器件的一般要求,并将其与迄今为止的实验进展进行了比较。当前看来最有前途的量子信息应用需要启用量子比特的单光子源,其中发射的光子状态与长寿命量子系统(例如电子自旋)的状态相关。金刚石中的氮空位中心由于具有长寿命的电子自旋相干性,光学可寻址性以及耦合至可控制数量的核自旋的能力,因此是实现此类设备的有前途的固态系统。详细讨论了该系统,并显示了我们实验室的实验结果。这种设备的关键组件是光学微腔,以增强氮空位中心与单个光子之间的耦合,我们在理论上讨论了实现这种增强的要求。

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