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Parts-per-trillion sensitivity for trace-moisture detection using wavelength-meter-controlled cavity ring-down spectroscopy

机译:使用波长米控制的腔响距光谱光谱分程零件对微量湿度检测的敏感性

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We introduced frequency-control and temperature-control systems in wavelength-meter-controlled cavity ring-down spectroscopy. The frequency-control system shifted the wavelength of the probe laser from 1393 nm to 696.5 nm where no strong absorption lines of water exist, and therefore, it could avoid measurement errors in laser frequency due to residual moisture in the built-in Fizeau interferometer of a wavelength meter. We verified the hypothesis that the nonuniform reflectivity of the mirror surface contributes to fluctuations in the ring-down time observed with multi-transverse-mode CRDS signals. The fluctuations due to this effect were greatly suppressed by the temperature-control system. Using this system, we could improve the minimum detectable absorption coefficient by three times on average and also improve the experimental standard deviations of the averages by nine times compared with those without the system. We measured near-infrared spectra of residual moisture in dry nitrogen at an approximately 1 nmol/mol (1 ppb) level and performed least-squares fitting of the averaged spectrum. The standard deviation of the residuals of the fitting was 6.6 × 10sup?12/sup cmsup?1/sup, corresponding to a mole fraction of water of 6.3 pmol/mol (6.3 ppt).
机译:我们引入了波长米控制的腔斜波光谱中的频率控制和温度控制系统。频率控制系统将探针激光的波长从1393nm移位到696.5nm,其中不存在强烈的水吸收线,因此,由于内置的​​Fizeau干涉仪中的残留水分,它可以避免激光频率的测量误差波长仪表。我们验证了镜面的非均匀反射率有助于用多横跨模式CRDS信号观察到的失击时间的波动。温度控制系统极大地抑制了由于这种效果的波动。使用该系统,我们可以平均提高最小可检测的吸收系数三倍,并且还与没有系统的那些,改善平均值的实验标准偏差九次。我们以约1nmol / mol(1ppb)水平的干燥氮气中的残留水分的近红外光谱测量,并且对平均光谱的至少正方形拟合。接头的残留物的标准偏差为6.6×10 Δ12 cm Δ1,对应于6.3 pmol / mol(6.3 ppt)的水的摩尔分数。

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