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Theory and experiment for atomic optical filter based on optical anisotropy in rubidium

机译:基于光学各向异性的in原子原子滤光片的理论与实验

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摘要

An atomic optical filter based on optical anisotropy induced by another left-circularly polarized pump field is theoretically and experimentally investigated in the 5S_(1/2)-5P_(3/2)-5D_(3/2) ladder-type system of rubidium vapor. The filter displays a single peak transmission of 14.4percent with 396 MHz bandwidth narrower than Doppler width. Furthermore, the variation of peak transmission versus pump intensity, pump detuning and cell temperature are also given. The theoretical and experimental results are in good agreement, which can enhance understanding of operation mechanism for this category of filter. The narrow-bandwidth filter is useful for free-space optical systems and laser spectroscopy.
机译:在another的5S_(1/2)-5P_(3/2)-5D_(3/2)阶梯型system系中,理论和实验研究了基于另一个左圆偏振泵浦场引起的光学各向异性的原子滤光片。汽。该滤波器显示的单个峰值传输为14.4%,其带宽比多普勒宽度窄396 MHz。此外,还给出了峰值透射率随泵浦强度,泵浦失谐和电池温度的变化。理论和实验结果吻合良好,可以增进对此类过滤器工作机理的理解。窄带宽滤波器可用于自由空间光学系统和激光光谱学。

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