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Ultrasensitive detections in atomic and molecular physics: demonstration in molecular overtone spectroscopy

机译:原子和分子物理学中的超灵敏检测:分子泛音光谱学中的演示

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摘要

We consider several highly sensitive techniques commonly used in detection of atomic and molecular absorptions. Their basic operating principles and corresponding performances are summarized and compared. We then present our latest results on the ultrasensitive detection of molecular overtone transitions to illustrate the principle and application of the cavity-enhanced frequency-modulation (FM) spectroscopy. An external cavity is used to enhance the molecular response to the light field, and an FM technique is applied for shot-noise-limited signal recovery. A perfect match between the FM sideband frequency and the cavity free spectral range makes the detection process insensitive to the laser-frequency noise relative to the cavity, and, at the same time, overcomes the cavity bandwidth limit. Working with a 1.064-µm Nd:YAG laser, we obtained sub-Doppler overtone resonances of C2HD, C2H2, and CO2 molecules. A detection sensitivity of 5 x 10^-13 of integrated absorption (1 x 10^-14/cm) over 1-s averaging time has been achieved.
机译:我们考虑了几种常用于检测原子和分子吸收的高灵敏度技术。总结并比较了它们的基本工作原理和相应的性能。然后,我们介绍分子泛音跃迁的超灵敏检测的最新结果,以说明腔增强频率调制(FM)光谱的原理和应用。外腔用于增强分子对光场的响应,而调频技术则用于散粒噪声限制的信号恢复。 FM边带频率与腔体自由光谱范围之间的完美匹配使检测过程对相对于腔体的激光频率噪声不敏感,同时克服了腔体带宽限制。使用1.064 µm Nd:YAG激光器,我们获得了C2HD,C2H2和CO2分子的亚多普勒泛音共振。在1 s的平均时间内实现了5 x 10 ^ -13的积分吸收(1 x 10 ^ -14 / cm)的检测灵敏度。

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  • 作者单位
  • 年度 1998
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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