论文标题

黑体摩擦力在RB和CS原子干涉仪中的作用

Roles of Blackbody Friction Forces in the Rb and Cs Atom Interferometers

论文作者

Kaur, Simranpreet, Arora, Bindiya, Sahoo, B. K.

论文摘要

原子干涉法是提供非常高精度测量值的最先进的技术之一。可能存在许多晦涩的力,可以干扰该仪器中使用的原子。在目前的工作中,我们正在探测一种重要的力的可能作用,称为``黑体摩擦力(BBFF)'',这可能会影响基于RB和CS原子使用原子干涉仪进行测量的精确度。由于实验设置和其他金属屏蔽中存在的杂散电磁场发出的黑体辐射,可以在原子上生成BBFF。可以通过整合原子动态极化的复杂部分来计算BBFF的强度,该原子的动态极化能力在上述原子中表现出不同的行为和非谐振的过渡。我们的分析表明,在RB和CS原子干涉仪中低温下,非谐振原子过渡对BBFF做出了重大贡献。目前的研究还提倡,必须在广泛的频率上进行整合以正确评估BBFF。特别是在较高的温度下。

Atom interferometry is amongst the most advanced technologies that provides very high-precision measurements. There can exist a number of obscure forces that can interfere with the atoms used in this instrument. In the present work, we are probing possible roles of one such important forces, known as ``blackbody friction force (BBFF)'', that may affect the precisions in the measurements made using atom interferometers based on the Rb and Cs atoms. The BBFF can be generated on atoms due to the black-body radiations emitted by the stray electromagnetic fields present in the experimental set-up and other metallic shielding. The strength of the BBFF can be calculated by integrating the complex parts of the dynamic polarizabilities of atoms, which show varying behaviour at the resonant and non-resonant transitions in the above atoms. Our analyses suggest that the off-resonant atomic transitions make significant contributions to the BBFF at low temperatures in the Rb and Cs atom interferometers. Present study also advocates that it is imperative to carry out the integration over a wide spectrum of frequencies for correct evaluation of the BBFF; specially at higher temperatures.

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