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High-precision pressure shifting measurement technique using frequency-stabilized cavity ring-down spectroscopy

机译:使用频率稳定型腔衰荡光谱的高精度压力转移测量技术

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摘要

We describe a high-precision method for measuring pressure shifting of absorption lines. The technique involves the acquisition of high-resolution spectra using a cavity ring-down spectrometer whose length is continuously locked to a frequency-stabilized reference laser over a range of sample pressures. We discuss a relatively large correction arising from the pressure-dependence of dispersion in the cavity modes, and we demonstrate pressure shifting measurements in air for transitions in the 16 02 A-band. Pressure shifts in the range -0.011 to -0.007 cm(-1) atm(-1) are reported. We measured relative positions of line centers to within 70kHz and determined pressure shifting coefficients over a 5 kPa pressure range with relative uncertainties approximately equal to 1.0, which constitutes a five-fold improvement over previous measurements. (c) 2007 Elsevier Ltd. All rights reserved.
机译:我们描述了一种测量吸收管路压力变化的高精度方法。该技术涉及使用腔体衰荡光谱仪采集高分辨率光谱,该光谱仪的长度在一定范围的样品压力下连续锁定到频率稳定的参考激光器。我们讨论了由腔模态中色散的压力依赖性引起的相对较大的校正,并演示了 16 02 A 波段过渡的空气中压力位移测量。报告了 -0.011 至 -0.007 cm(-1) atm(-1) 范围内的压力变化。我们测量了管路中心的相对位置,在70kHz以内,并确定了5 kPa压力范围内的压力转移系数,相对不确定度约为1.0%,这比以前的测量值提高了五倍。(c) 2007 爱思唯尔有限公司保留所有权利。

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