IEEE Trans Ultrason Ferroelectr Freq Control. 2014 Jan;61(1):203-6. doi: 10.1109/TUFFC.2014.6689789.
Collisions between cold cesium atoms and background gas atoms at ambient temperature reduce the cold atom signal in a fountain clock and at the same time produce a shift in the measured clock frequency. We evaluate the shift in the NPL-CsF2 cesium fountain primary frequency standard based on measurements of the fractional loss of cold atoms from the atomic cloud during the interrogation time combined with a model by Gibble that quantifies the relationship between the loss and the frequency shift.
在环境温度下,冷铯原子与背景气体原子之间的碰撞会降低喷泉钟中的冷原子信号,同时导致测量的时钟频率发生偏移。我们根据在询问时间内从原子云中损失的冷原子的分数测量值,结合吉布尔(Gibble)定量描述损失与频率偏移之间关系的模型,评估了 NPL-CsF2 铯喷泉基准的主要频率标准的偏移。