首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Saturation of atomic transitions using subwavelength diameter tapered optical fibers in rubidium vapor
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Saturation of atomic transitions using subwavelength diameter tapered optical fibers in rubidium vapor

机译:在sub蒸气中使用亚波长直径锥形光纤饱和原子跃迁

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We experimentally investigate ultralow-power saturation of the rubidium D_2 transitions using a tapered optical fiber (TOF) suspended in a warm Rb vapor. A direct comparison of power-dependent absorption measurements for the TOF system with those obtained in a standard free-space vapor cell system highlights the differences in saturation behavior for the two systems. The effects of hyperfine pumping in the TOF system are found to be minimized due to the short atomic transit times through the highly confined evanescent optical mode guided by the TOF. The TOF system data are well-fit by a relatively simple empirical absorption model that indicates nanoWatt-level saturation powers.
机译:我们使用悬浮在温暖的Rb蒸气中的锥形光纤(TOF),通过实验研究了D D_2跃迁的超低功率饱和。将TOF系统的与功率有关的吸收测量值与在标准自由空间蒸汽电池系统中获得的测量值进行直接比较,突出显示了这两种系统在饱和行为方面的差异。由于通过TOF引导的高度受限的渐逝光学模式的原子迁移时间短,因此TOF系统中的超精细泵浦效应被最小化。 TOF系统数据通过指示纳瓦级饱和功率的相对简单的经验吸收模型很好地拟合。

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