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Advances in ~(133)Cs Fountains: Control of the Cold Collision Shift and Observation of Feshbach Resonances

机译:〜(133)CS喷泉的进步:控制冷碰撞偏移和对Feshbach共振的观察

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This paper describes the work performed at BNM-SYRTE (Observatoire de Paris) over the past few years toward the improvement and the use of microwave frequency standards using laser-cooled atoms. First, recent improvements of the 133Cs and 87Rb atomic fountains are described. An important advance is the achievement of a fractional frequency instability of 1.6 × 10–14–1/2 where is the measurement time in seconds, thanks to the routine use of a cryogenic sapphire oscillator as an ultra-stable local frequency reference. The second advance is a powerful method to control the frequency shift due to cold collisions. These two advances lead to a frequency stability of 2 × 10–16 at 50 000 s for the first time for primary standards. In addition, these clocks realize the SI second with an accuracy of 7 × 10–16, one order of magnitude below that of uncooled devices.
机译:本文介绍了过去几年在过去几年中在过去几年中进行的工作,以改善和使用激光冷却原子的微波频率标准。首先,描述了最近的133C和87RB原子喷墨的改进。重要的提前是实现1.6×10-14-1 / 2的分数频率不稳定性,在几秒钟内,由于常规使用低稳定的局部频率参考。第二前进是控制由于冷碰撞引起的频移的强大方法。对于主要标准,这两个前进导致了50 000秒的频率稳定性为2×10-16。另外,这些时钟以7×10-16的精度实现了SI秒,低于未冷却设备的级。

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