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高达4×10⁻¹³厘米⁻¹赫兹⁻¹/²的多普勒加宽噪声免疫腔增强光学外差分子光谱法:一个精细度为50000的腔的实现

Doppler-broadened noise-immune cavity-enhanced optical heterodyne molecular spectrometry down to 4  ×  10⁻¹³  cm⁻¹  Hz(-1/2): implementation of a 50,000 finesse cavity.

作者信息

Silander Isak, Hausmaninger Thomas, Ma Weiguang, Ehlers Patrick, Axner Ove

出版信息

Opt Lett. 2015 May 1;40(9):2004-7. doi: 10.1364/OL.40.002004.

Abstract

We report on the realization of a Doppler-broadened noise-immune cavity-enhanced optical heterodyne molecular spectrometry (NICE-OHMS) instrumentation based on a high-finesse (50,000) cavity with a detection sensitivity of 4×10(-13)  cm(-1) Hz(-1/2). For the P(e)(11) transition targeted at 1.5316 μm, this corresponds to a C(2)H(2) concentration of 240 ppq (parts-per-quadrillion) detected at 100 Torr. The setup was originally affected by recurrent dips in the cavity transmission, which were attributed to excitation of high-order transverse mode by scattering from the mirrors. The effect of these was reduced by insertion of a small pinhole in the cavity.

摘要

我们报告了一种基于高精细度(50,000)腔的多普勒加宽噪声免疫腔增强光学外差分子光谱仪(NICE-OHMS)的实现,其检测灵敏度为4×10⁻¹³ cm⁻¹ Hz⁻¹/²。对于目标波长为1.5316μm的P(e)(11)跃迁,这相当于在100托压力下检测到的乙炔浓度为240 ppq(万亿分之一)。该装置最初受到腔透射率反复下降的影响,这归因于镜子散射激发高阶横向模式。通过在腔内插入一个小孔,这种影响得到了降低。

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