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首页> 外文期刊>Journal of optics, B. Quantum and semiclassical optics: Journal of the European Optical Society >Coherent effects on the Zeeman sublevels of hyperfine states at the D_1 and D_2 lines of Rb
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Coherent effects on the Zeeman sublevels of hyperfine states at the D_1 and D_2 lines of Rb

机译:在Rb的D_1和D_2线处对超精细状态的Zeeman子级的相干效应

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Subnatural-width resonances due to coherent effects in optical pumping at hyperfine (hf) transitions of Rb are investigated using a linearly or circularly polarized single-frequency diode laser beam. The sign and amplitude of the resonances in the fluorescence are measured by scanning the laser frequency over the hf transitions of the Rb D_1 and D_2 lines. The fluorescence perpendicular to the laser beam is detected as a function of magnetic field parallel to the beam propagation and scanned around zero value. In the case of linear polarization of the field, dark resonances are observed for hf transitions with F_g → F_e = F_g - 1 and F_g → F_e = F_g, and bright resonances are observed for transitions with F_g → F_e = F_g + 1. This is in agreement with the recently developed theories. For all (except F_g = 2 → F_e = 3, ~(85)Rb, D_1 line) hf transitions the sign of the resonances reverses when the polarization of the field changes to circular. The amplitudes of the resonances correspond to the probability of the hf transitions and to the calculated loss rate of the population to the ground hf level not excited by the laser field. The observed narrow resonances (FWHM: few tens of kHz) and their sensitivity to weak magnetic fields are interesting for high-resolution spectroscopy and for development of simple and precise magnetometers.
机译:使用线性或圆偏振单频二极管激光束研究了在Rb的超精细(hf)跃迁处的光泵浦中由于相干效应而引起的亚自然宽共振。通过在Rb D_1和D_2线的hf跃迁上扫描激光频率,可以测量荧光中共振的符号和幅度。垂直于激光束的荧光被检测为平行于光束传播的磁场的函数,并在零值附近扫描。在场的线性极化的情况下,在F_g→F_e = F_g-1和F_g→F_e = F_g的hf跃迁中观察到暗共振,而在F_g→F_e = F_g + 1的跃迁中观察到亮共振。与最近发展的理论一致。对于所有的场(F_g = 2→F_e = 3,〜(85)Rb,D_1线除外),当场的极化变为圆形时,hf跃迁的共振符号反转。共振的幅度对应于hf跃迁的概率,并且对应于计算出的未被激光场激发的地面hf电平的总体损耗率。观察到的窄共振(FWHM:几十kHz)及其对弱磁场的敏感性,对于高分辨率光谱学以及简单精确的磁力计的开发而言,是很有趣的。

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