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Nonlinear pressure shifts of alkali-metal atoms in Xenon

机译:氙中碱金属原子的非线性压力位移

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We demonstrate that the microwave resonant frequencies of ground-state 87Rb and 133Cs atoms have a nonlinear dependence on the pressure of the buffer gas Xe. Surprisingly, though the frequency shifts of Rb and Cs in the heavy noble gases Ar, Kr, and Xe are all negative, the nonlinearity in Xe is of the opposite sign to the nonlinearities in Ar and Kr. This discrepancy suggests that the frequency shifts due to alkali-noble van der Waals molecules in Xe are opposite in sign to the those in Ar and Kr. The nonlinearity in Xe shows a reproducible deviation from a simple model used to describe the shifts in Ar and Kr, which suggests that the spin-rotation interaction plays a significant role in the frequency shifts due to molecules. No nonlinearities were observed with the gases He and N2, as expected, and also Ne to within experimental error, which suggests that molecules do not form in Ne. Additionally, we present improved measurements of the shifts of Rb in Ar and Kr and of Rb and Cs in He and N2.
机译:我们证明了基态 87 Rb和 133Cs 原子的微波共振频率对缓冲气体Xe的压力具有非线性依赖性。令人惊讶的是,尽管重稀有气体Ar,Kr和Xe中Rb和Cs的频移均为负,但Xe中的非线性与Ar和Kr中的非线性相反。这种差异表明Xe中由于碱贵的范德华分子引起的频移与Ar和Kr中的频移符号相反。 Xe中的非线性显示出与用于描述Ar和Kr位移的简单模型的可重现偏差,这表明自旋-旋转相互作用在分子引起的频率位移中起着重要作用。如预期的那样,在氦气和N 2 气体中未观察到非线性,在实验误差范围内也未观察到Ne至N的非线性,这表明分子未在Ne中形成。此外,我们提出了对Ar和Kr中Rb的迁移以及He和N 2 中Rb和Cs迁移的改进测量方法。

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