Temperature Dependence of the Linewidths and Amplitudes of the Sub-Doppler Resonances of 87Rb D2 Line Detected with σ(σ)-Polarized Pumping and Probe Laser Beams

Pub Date : 2024-03-11 DOI:10.1007/s10946-024-10185-7
Ersoy Şahin
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Abstract

We asses impact of the temperature of 87Rb atoms on the linewidths and amplitudes of the F = 1 → F′ = 0, 1, 2 and F = 2 → F′ = 1, 2, 3 hyperfine resonances of the 87Rb D2 line, using the circularly-polarized pumping beam and the probe laser beam. To achieve high-precision and accuracy, frequency-stabilized narrow-linewidth extended-cavity diode lasers, we employ a temperature-controlled Fabry–Pérot interferometer and a magnetically-shielded temperature-controlled Rb cell with dimensions in the centimeter range, containing enriched 87Rb atoms. Consequently, the linewidth and amplitude measurements are conducted with inaccuracies of 1.5 MHz and 0.4 mV, respectively.

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用σ(σ)偏振泵浦激光束和探针激光束探测到的 87Rb D2 线的线宽和亚多普勒共振振幅的温度依赖性
摘要 我们利用圆偏振泵浦光束和探测激光光束,评估了 87Rb 原子温度对 87Rb D2 线的 F = 1 → F′ = 0, 1, 2 和 F = 2 → F′ = 1, 2, 3 超精细共振的线宽和振幅的影响。为了实现高精度、高准确度、频率稳定的窄线宽扩展腔二极管激光器,我们采用了温控法布里-佩罗干涉仪和磁屏蔽温控掺铒池,掺铒池的尺寸在厘米范围内,内含富集的 87Rb 原子。因此,线宽和振幅测量的误差分别为 1.5 MHz 和 0.4 mV。
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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