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A digitized atomic clock based on transient oscillation of detuned coherent population trapping

机译:基于失谐相干人口陷阱的瞬态振荡的数字化原子钟

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We demonstrated a digitized atomic clock which is based on the transient oscillation of detuned coherent population trapping (DCPT). In the Λ structure atomic states system, the DCPT oscillation frequency exactly equals the absolute value of the frequency difference between the two pump laser fields minus the two ground states hyperfine splitting frequency. This DCPT atomic clock obtains the standard frequency by adding/subtracting the DCPT frequency from the laser modulation RF frequency. And it does not require a phase locking loop circuit to lock the standard frequency to the atomic transition. In addition, its data processing section can be easily digitized with high accuracy. The frequency instability of 1×10−111/2 (τ=1000s) has been achieved.
机译:我们展示了一个数字原子钟,它基于失谐相干人口陷阱(DCPT)的瞬态振荡。在Λ结构原子态系统中,DCPT振荡频率正好等于两个泵浦激光场之间的频率差的绝对值减去两个基态超精细分裂频率。该DCPT原子钟通过从激光调制RF频率中减去DCPT频率来获得标准频率。而且它不需要锁相环电路就能将标准频率锁定到原子跃迁。另外,其数据处理部分可以容易地以高精度数字化。已经实现了1×10 −11 1/2 (τ= 1000s)的频率不稳定性。

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