论文标题

在室温下,在RB原子基态下的角动量对齐方式转换

Angular momentum alignment-to-orientation conversion in the ground state of Rb atoms at room temperature

论文作者

Mozers, A., Busaite, L., Osite, D., Auzinsh, M.

论文摘要

我们通过激光辐射的关节相互作用和在室温下与原子rubidium的外部磁场进行了实验和理论上角度的动量对齐方向转换。特别是我们对原子基态的对齐定向转换感兴趣。在实验上,激光频率固定在$ d_1 $ rubidium线的超精细过渡中。我们使用了一个理论模型来考虑所有相邻的超细级水平,在外部磁场中的磁性分离层的混合,令人兴奋的激光辐射的相干性能和多普勒效应。实验是通过激发线性极化激光辐射的原子进行的。检测到两个相对的圆极化激光诱导的荧光(LIF)成分,然后取出差异。包括$^{85} $ rb和$^{87} $ rb rubidium同位素的Hyperfine磁性超级过渡的组合信号。无疑可以在各种激光频率的差信号中鉴定到定向转换,当激光功率密度增加时,可以观察到信号形状的变化。我们通过对不一致和相干效应的影响进行分析来研究LIF成分的观察到信号的形成和潜在物理过程及其差异。我们对理论信号进行了模拟,这些信号显示了基础状态相干影响对LIF差异信号的影响。

We investigated experimentally and theoretically angular momentum alignment-to-orientation conversion created by the joint interaction of laser radiation and an external magnetic field with atomic rubidium at room temperature. In particular we were interested in alignment-to-orientation conversion in atomic ground state. Experimentally the laser frequency was fixed to the hyperfine transitions of $D_1$ line of rubidium. We used a theoretical model for signal simulations that takes into account all neighboring hyperfine levels, the mixing of magnetic sublevels in an external magnetic field, the coherence properties of the exciting laser radiation, and the Doppler effect. The experiments were carried out by exciting the atoms with linearly polarized laser radiation. Two oppositely circularly polarized laser induced fluorescence (LIF) components were detected and afterwards their difference was taken. The combined LIF signals originating from the hyperfine magnetic sublevel transitions of $^{85}$Rb and $^{87}$Rb rubidium isotopes were included. The alignment-to-orientation conversion can be undoubtedly identified in the difference signals for various laser frequencies as well as change in signal shapes can be observed when the laser power density is increased. We studied the formation and the underlying physical processes of the observed signal of the LIF components and their difference by performing the analysis of the influence of incoherent and coherent effects. We performed simulations of theoretical signals that showed the influence of ground-state coherent effects on the LIF difference signal.

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