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首页> 外文期刊>Applied optics >PROGNOSIS FOR A MID-INFRARED MAGNETIC ROTATION SPECTROMETER FOR THE IN SITU DETECTION OF ATMOSPHERIC FREE RADICALS
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PROGNOSIS FOR A MID-INFRARED MAGNETIC ROTATION SPECTROMETER FOR THE IN SITU DETECTION OF ATMOSPHERIC FREE RADICALS

机译:原位检测大气自由基的中红外磁旋转光谱仪的预测

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摘要

Mid-infrared magnetic rotation spectroscopy (NIRS) experiments on nitric oxide (NO) are quantitatively modeled by theoretical calculations. The verified theory is used to specify an instrument that can make in situ measurements on NO and NO2 in the Earth's atmosphere at a sensitivity level of a few parts in 10(12) by volume per second. The prototype instrument used in the experiments has an extrapolated detection limit for NO of 30 parts in 10(9) for a 1-s integration time over a 12-cm path length. The detection limit is an extrapolation of experimental results to a signal-to-noise ratio of one, where the noise is considered to be one-half the peak-to-peak baseline noise. Also discussed are the various factors that can limit the sensitivity of a MRS spectrometer that uses liquid-nitrogen-cooled lead-salt diode lasers and photovoltaic detectors. (C) 1996 Optical Society of America [References: 42]
机译:通过理论计算对一氧化氮(NO)的中红外磁旋转光谱(NIRS)实验进行了定量建模。经过验证的理论用于指定一种仪器,该仪器可以以每秒10(12)体积的几分之一的灵敏度对地球大气中的NO和NO2进行原位测量。实验中使用的原型仪器在12厘米路径长度上以1-s积分时间对10(9)中的30个零件的NO进行了推断的检出限。检测极限是将实验结果外推至信噪比为1的情况,其中噪声被认为是峰峰值基线噪声的一半。还讨论了各种因素,这些因素可能会限制使用液氮冷却的铅盐二极管激光器和光电探测器的MRS光谱仪的灵敏度。 (C)1996年美国眼镜学会[参考:42]

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