首页> 外文会议>Chemical and Biological Sensors for Industrial and Environmental Monitoring II; Progress in Biomedical Optics and Imaging; vol.7 no.43; Proceedings of SPIE-The International Society for Optical Engineering; vol.6378 >Tunable Diode Laser and Difference Frequency Generation Absorption Spectrometers for Highly Sensitive Airborne Measurements of Trace Atmospheric Constituents
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Tunable Diode Laser and Difference Frequency Generation Absorption Spectrometers for Highly Sensitive Airborne Measurements of Trace Atmospheric Constituents

机译:可调谐二极管激光和差频产生吸收光谱仪,用于高灵敏的机载空气中痕量大气成分的测量

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摘要

Enhancing our understanding of atmospheric processes and transformations require a suite of ever more sensitive, selective, versatile, and fast instruments that can measure trace atmospheric constituents at and below mixing ratios of 100-parts-per-trillion on airborne platforms. Instruments that can carry out such measurements are very challenging, as airborne platforms vibrate, experience accelerations, and undergo large swings in cabin temperatures and pressures. These challenges notwithstanding, scientists and engineers at the National Center for Atmospheric Research (NCAR) in collaboration with Rice University have long been employing mid-infrared absorption spectroscopy to acquire atmospheric measurements of important trace gases like formaldehyde on a variety of airborne platforms. The present paper will discuss two very recent airborne formaldehyde instruments employing tunable diode laser and difference frequency generation mid-IR laser sources. Both instruments employ second-harmonic absorption spectroscopy utilizing astigmatic multipass Herriott cells. This paper will discuss the performance of both instruments during recent airborne campaigns, focusing on the many steps necessary for minimizing the various aircraft perturbations. Prospects for the detection of other trace gases will also be presented.
机译:增强我们对大气过程和转换的理解需要一套更加灵敏,选择性,多功能和快速的仪器,这些仪器可以在机载平台上以百万分之百(百万分之一)的混合比或以下的比例测量痕量大气成分。可以执行此类测量的仪器非常具有挑战性,因为机载平台会振动,经历加速度并在机舱温度和压力下发生较大的波动。尽管存在这些挑战,但美国国家大气研究中心(NCAR)与莱斯大学合作的科学家和工程师长期以来一直采用中红外吸收光谱法在各种机载平台上对重要的痕量气体(如甲醛)进行大气测量。本文将讨论两种最近使用可调二极管激光器和差频产生中红外激光源的机载甲醛仪器。两种仪器均采用二次谐波吸收光谱法,该技术利用了散光多程Herriott池。本文将讨论在最近的空降战役中这两种仪器的性能,重点是使各种飞机扰动最小化的许多步骤。还将介绍检测其他痕量气体的前景。

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