Polarization spectroscopy of an excited state transition in Rubidium

IF 1.6 Q3 OPTICS
OSA Continuum Pub Date : 2021-10-01 DOI:10.1364/osac.439037
Nourah F. Almuhawish, Shuying Chen, L. Downes, M. Jamieson, Andrew R. MacKellar, K. Weatherill
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引用次数: 1

Abstract

We investigate polarization spectroscopy of an excited state transition in room-temperature rubidium vapor. By applying a circularly polarized coupling beam, resonant with the 52S1/2 → 52P3/2 transition, we induce anisotropy in the atomic medium that is then probed by scanning a probe beam across the 52P3/2 → 62S1/2 transition. By performing polarimetry on the probe beam, a dispersive spectral feature is observed. We characterize the excited-state polarization spectrum as a function of coupling intensity for both isotopes and find that at high intensities, Autler-Townes splitting results in a sub-feature, which theoretical modelling shows is enhanced by Doppler averaging. This spectroscopic technique produces a narrow dispersive signal which is ideal for laser frequency stabilization to excited-state transitions.
铷激发态跃迁的偏振光谱
我们研究了室温铷蒸气中激发态跃迁的偏振光谱。通过施加圆偏振耦合光束,与52S1/2谐振 → 52P3/2跃迁,我们在原子介质中诱导各向异性,然后通过扫描穿过52P3/2的探测束来探测 → 62S1/2转换。通过对探测光束进行偏振测量,可以观察到色散光谱特征。我们将激发态偏振光谱表征为两种同位素的耦合强度的函数,并发现在高强度下,Autler-Townes分裂会产生一个子特征,理论建模表明,多普勒平均增强了该子特征。这种光谱技术产生窄色散信号,这对于激光频率稳定到激发态跃迁是理想的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
OSA Continuum
OSA Continuum OPTICS-
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