Atomic trajectories in compact cesium beam clocks

B. Jaduszliwer
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Abstract

Accurate calculations are performed of atomic trajectories in conventional cesium beam tubes (CBTs) using dispersive, two-wire field magnets and also in a novel configuration using two orthogonal one-dimensional focusing dipoles of the type described by P. Kartaschoff (1969). In the first configuration, it was possible to explain observed differences in atomic velocity distribution in terms of small variations in oven and/or detector offsets. The second configuration yields beam intensities that are significantly higher than the ones obtained with dispersive magnets and/or substantially lower atomic velocities, and thus could improve the frequency stability of compact cesium clocks in the white-noise regime. Present design differs from P. Kartaschoff's prescription in that a one-dimensional focussing dipole, rather than a hexapole or quadrupole magnet, is used as the A magnet in the CBT, making the tube manufacturing simpler.<>
紧凑铯束钟中的原子轨迹
利用色散双线场磁体和P. Kartaschoff(1969)描述的两个正交一维聚焦偶极子的新型配置,对传统铯束管(CBTs)中的原子轨迹进行了精确计算。在第一种配置中,可以根据烘箱和/或探测器偏移量的微小变化来解释观察到的原子速度分布的差异。第二种结构产生的光束强度明显高于色散磁体和/或大大降低原子速度所获得的光束强度,因此可以提高紧凑铯时钟在白噪声状态下的频率稳定性。目前的设计与P. Kartaschoff的处方不同之处在于,在CBT中使用一维聚焦偶极磁铁而不是六极或四极磁铁作为a磁铁,使管的制造更简单。
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