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High-precision GHZ clock generation using spin states in diamond

机译:利用钻石中的自旋态生成高精度GHZ时钟

摘要

Techniques for obtaining a frequency standard using the crystal field splitting frequency of nitrogen vacancy center in diamond are disclosed. In certain exemplary embodiments, a microwave field is applied to the diamond and optically exciting the diamond under green light. The photoluminescent response of the diamond is measured by a photodetector. The intensity of the photoluminescent response can be used to determine the phase shift between the microwave and the crystal field splitting frequency. The microwave field frequency can be adjusted until the phase shift is below a predetermined threshold, and the microwave frequency can then be output for use as a standard.
机译:公开了使用金刚石中的氮空位中心的晶体场分裂频率来获得频率标准的技术。在某些示例性实施例中,微波场被施加到钻石上并且在绿光下光学激发钻石。钻石的光致发光响应由光电探测器测量。光致发光响应的强度可用于确定微波与晶体场分裂频率之间的相移。可以调节微波场频率,直到相移低于预定阈值为止,然后可以输出微波频率作为标准。

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