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散粒噪声限制的多普勒加宽抗噪声腔增强光学外差分子光谱法。

Shot-noise-limited Doppler-broadened noise-immune cavity-enhanced optical heterodyne molecular spectrometry.

作者信息

Zhao Gang, Hausmaninger Thomas, Ma Weiguang, Axner Ove

出版信息

Opt Lett. 2018 Feb 15;43(4):715-718. doi: 10.1364/OL.43.000715.

Abstract

Shot-noise-limited Doppler-broadened (Db) noise-immune cavity-enhanced optical heterodyne molecular spectrometry (NICE-OHMS) has been realized by implementation of balanced detection. A characterization of the system based on Allan-Werle plots of the absorption coefficient, retrieved by fitting a model function to data, shows that the system has a white noise equivalent absorption per unit length per square root of bandwidth of 2.3×10  cm Hz, solely 44% above the shot noise limit, and a detection sensitivity of 2.2×10  cm over 200 s, both being unprecedented for Db NICE-OHMS. The white noise response follows the expected inverse square root dependence on power that is representative of a shot-noise-limited response, which confirms that the system is shot-noise-limited.

摘要

通过采用平衡检测,实现了散粒噪声限制的多普勒加宽(Db)无噪声腔增强光学外差分子光谱法(NICE-OHMS)。通过将模型函数拟合到数据来检索吸收系数,并基于此类吸收系数的艾伦 - 韦尔图对系统进行表征,结果表明,该系统每单位长度每带宽平方根的白噪声等效吸收为(2.3×10^{-9})cm/Hz,仅比散粒噪声极限高44%,并且在200秒内的检测灵敏度为(2.2×10^{-9})cm,这两个指标对于Db NICE-OHMS来说都是前所未有的。白噪声响应遵循预期的与功率的平方根反比关系,这是散粒噪声限制响应的典型特征,证实了该系统是散粒噪声限制的。

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