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An atomic frequency micrometer based on the coherent population beating phenomenon

机译:基于相干种群跳动现象的原子频率千分尺

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We have demonstrated an atomic frequency micrometer based on the coherent population beating phenomenon, which enables us to obtain the beat frequency between the measured signal and the atomic transition frequency. The beat frequency and its fluctuations are detected and accurately measured through digital signal processing, which is capable of up to mHz or higher frequency resolutions (for GHz signal). The frequency discrimination via our method is comparable to that of the Ramsey fringes method, and the working range is no longer limited by the width of line shape. This enables us to achieve an atomic clock by actively compensating the frequency shift, which eliminates the need for a phase locking loop, and broadens the working range with increasing reliability. This novel scheme could be extended to the optical frequency region, implying possible future applications in optical atomic clocks, optical frequency comb, atomic spectroscopy and other related researches.
机译:我们已经证明了基于相干总体跳动现象的原子频率千分尺,它使我们能够获得被测信号与原子跃迁频率之间的拍频。通过数字信号处理可以检测并精确测量拍频及其波动,该信号处理能够达到mHz或更高的频率分辨率(对于GHz信号)。通过我们的方法进行的频率区分可与拉姆西条纹方法相媲美,并且工作范围不再受线形宽度的限制。这使我们能够通过主动补偿频率偏移来获得原子钟,从而消除了对锁相环的需求,并以提高的可靠性扩展了工作范围。这种新颖的方案可以扩展到光学频率区域,这暗示了在光学原子钟,光学频率梳,原子光谱学和其他相关研究中的未来应用。

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