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Pulsed, single-mode cavity ringdown spectroscopy

机译:脉冲单模腔衰荡光谱

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We discuss the use of single-mode cavity ringdown spectroscopy with pulsed lasers for quantitative gas density and line strength measurements. The single-mode approach to cavity ringdown spectroscopy gives single exponential decay, signals without mode beating, which allows measurements with uncertainties near the shot-noise limit. The technique is demonstrated with a 10-cm-long ringdown cavity and a pulsed, frequency-stabilized optical parametric Oscillator as the light source. A noise-eqnivalent absorption coefficient of 5 × 10~(-10) cm~(-1) Hz~(-1/2) is demonstrated, and the relative standard deviation in the ringdown time (σ_(T)/τ) extracted from a fit to an individual ringdown curve is found to be the same as that for an ensemble of hundreds of independent measurements. Repeated measurement of a line strength is shown to have a standard deviation <0.3%. The effects of normally distributed noise on quantities measured using cavity ringdown spectroscopy are discussed, formulas for the relative standard deviation in the ringdown time are given in the shot- and technical-noise limits, and the noise-equivalent absorption coefficient in these limits are compared for pulsed and continuous-wave light sources.
机译:我们讨论将单模腔衰荡光谱技术与脉冲激光一起用于定量气体密度和线强度测量。腔衰荡光谱的单模方法可产生单指数衰减,信号无模式跳动,从而可以在散粒噪声极限附近进行不确定性的测量。该技术以10厘米长的振铃腔和脉冲的,频率稳定的光学参量振荡器作为光源进行了演示。噪声等效吸收系数为5×10〜(-10)cm〜(-1)Hz〜(-1/2),并提取出振铃时间的相对标准偏差(σ_(T)/τ)拟合到单个振铃曲线的结果与数百个独立测量的集合的结果相同。重复测量线强度显示标准偏差<0.3%。讨论了正态分布噪声对使用腔衰荡光谱法测量的量的影响,并在散粒和技术噪声限值中给出了衰荡时间中相对标准偏差的公式,并比较了这些限值中的等效噪声吸收系数用于脉冲和连续波光源。

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