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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >All-optical atomic clock based on coherent population trapping in Rb-85
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All-optical atomic clock based on coherent population trapping in Rb-85

机译:Rb-85中基于相干人口陷阱的全光原子钟

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An all-optical microwave frequency standard based on coherent population trapping (CPT) in Rb-85 is developed. The CPT resonances are detected by an ordinary edge-emitting diode laser in a simple optical setup. A buffer-gas mixture is carefully optimized to yield a narrow linewidth and a reduced temperature dependence of the resonance frequency. With the developed system we are able to measure ultranarrow optically induced hyperfine CPT resonances at <20 Hz, which is in good agreement with the linewidth calculated from experimental parameters. The frequency of an RF-signal generator has been stabilized to the CPT resonance between the two m(F) = 0 magnetic sublevels. The relative frequency stability (square root of Allan variance) follows a slope of 3.5 x 10(-11) τ(-1/2) (1 s < tau < 2000 s). The best stability of 6.4 x 10(-13) is reached-at an integration time of τ = 2000 s. This stability is sufficient for many high-precision applications. Frequency-shift measurements were made to evaluate the frequency dependencies on the operation parameters. (C) 2003 Optical Society of America. [References: 30]
机译:提出了一种基于Rb-85中相干人口陷阱(CPT)的全光微波频率标准。通过普通的边缘发射二极管激光器以简单的光学设置检测CPT谐振。仔细优化了缓冲气体混合物,以产生较窄的线宽并降低了共振频率的温度依赖性。使用已开发的系统,我们能够在<20 Hz的频率下测量超细光学诱导的超精细CPT共振,这与根据实验参数计算出的线宽非常吻合。 RF信号发生器的频率已稳定到两个m(F)= 0磁子能级之间的CPT谐振。相对频率稳定性(艾伦方差的平方根)遵循3.5 x 10(-11)τ(-1/2)(1 s

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