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Atomic clocks based on coherent population trapping: a review

机译:基于相干人口陷阱的原子钟:综述

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The paper gives an overview of the use of the coherent population trapping phenomenon (CPT) in alkali-metal atoms in the implementation of atomic frequency standards. Several avenues are examined. These include: the approach using a combination of the CPT phenomenon and the Ramsey separated interaction field technique on an atomic beam; the passive approach in a cell in which the microwave hyperfine resonance excited by the CPT phenomenon is detected directly on the transmitted radiation; the maser approach in which the same resonance is observed by means of stimulated emission in a microwave cavity-cell arrangement; and, finally, the proposed approach using pulses in a time sequence that implements the combined CPT-Ramsey separated interaction field technique in time rather than in space. A review of field and laboratory implementations using these approaches is made.
机译:本文概述了在原子频率标准的实施中碱金属原子中相干人口陷阱现象(CPT)的使用。研究了几种途径。这些方法包括:在原子束上结合使用CPT现象和Ramsey分离相互作用场技术的方法;直接在透射辐射中检测到由CPT现象激发的微波超精细共振的细胞中的被动方法; maser方法,其中在微波腔室装置中通过受激发射观察到相同的共振;最后,提出的方法是按时间顺序使用脉冲,该方法在时间而非空间中实现了CPT-Ramsey分离的相互作用场组合技术。回顾了使用这些方法的现场和实验室实施情况。

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