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Atomic hydrogen spin-exchange collisions in a cryogenic maser

机译:低温微波激射器中的氢原子自旋交换碰撞

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摘要

The results of an experiment in which the oscillation frequency of a cryogenic hydrogen (H) maser is studied as a function of the H density and the 1420-MHz resonator tuning are presented. The results are interpreted in terms of a theory which predicts that hyperfine interactions between colliding H atoms should include a frequency shift not predicted by classical spin-exchange theories. This effect has the potential to limit the ultimate frequency stability of H masers operating at cryogenic temperatures. The authors found qualitative agreement between the data and the magnitude of the predicted frequency shift. The sign of the effect which is observed however, is unmistakably opposite to that predicted by theory.
机译:给出了实验结果,其中研究了低温氢(H)激振器的振荡频率与H密度和1420 MHz谐振器调谐的关系。结果是根据一种理论解释的,该理论预测碰撞的H原子之间的超精细相互作用应包括经典自旋交换理论无法预测的频移。这种效应有可能限制在低温下工作的H masers的最终频率稳定性。作者发现数据与预测的频移幅度之间存在定性一致性。然而,所观察到的效果的迹象与理论所预测的毫无二致。

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