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High spectral resolution solid state infrared spectrometer for atmospheric air quality measurement

机译:高光谱分辨率固态红外光谱仪,用于大气空气质量测量

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Spectrometers, in which a grating is coupled with a two dimensional detector array to provide high resolution spectra without the need for spectral scan mechanisms can be designed in compact, rugged, configurations, making them well suited for spaceborne spectral mapping applications. We are pursuing the use of this technology for spaceborne tropospheric air quality monitoring, targeting high spectral resolution solar reflective and thermal emission spectroscopy in the wavelength range 2 to 5 μm. In this region key tropospheric pollutant and greenhouse gases such as O_3, CO, CO_2, CH_4, HCHO, and H_2O, have strong spectral features. The relatively short wavelengths allow for the use of well-developed detector technology and passive cooling. With sufficient resolving power, sensitivity, and judicious combination of spectra, good information on tropospheric vertical distributions, including boundary layer data, can be obtained. This paper describes the performance characteristics of a laboratory prototype of such a spectrometer, focused on the measurement of CO spectra in the range 4.56 to 4.73 μm. The design uses a cooled grating and optical train, coupled with a cooled 1024 × 1024 pixel HgCdTe array. It achieves a spectral resolution of ~0.32 cm~(-1) and NESR of 5.8 × 10~(-9) w/cm2/sr/cm~(-1). Both laboratory absorption spectra and zenith-looking air emission spectra of CO are presented. The spectrometer is the pre-cursor to a combined 4.6/2.33 μm instrument being developed under NASA funding and designed to demonstrate the unique vertical information capability of such a combination for tropospheric CO measurement. We give a brief discussion of a spaceborne concept focused on this technique.
机译:光谱仪,其中光栅与二维检测器阵列耦合,以提供高分辨率光谱,而无需频谱扫描机构,可以设计成紧凑,坚固的配置,使其适合于星载光谱映射应用。我们正在追求使用该技术进行星载的对流层空气质量监测,靶向高频光谱分辨率的太阳能反射和热发射光谱,在波长范围为2至5μm。在该地区,关键的对流层污染物和温室气体如O_3,CO,CO_2,CH_4,HCHO和H_2O,具有很强的光谱特征。相对较短的波长允许使用良好的探测器技术和被动冷却。具有足够的解决能力,灵敏度和光谱的明智组合,可以获得关于对流层垂直分布的良好信息,包括边界层数据。本文介绍了这种光谱仪的实验室原型的性能特征,重点集中在4.56至4.73μm的范围内的CO光谱。该设计使用冷却的光栅和光学列车,与冷却的1024×1024像素HGCDTE阵列耦合。它达到〜0.32cm〜(-1)的光谱分辨率,NESR为5.8×10〜(-9)w / cm2 / sr / cm〜(-1)。提出了实验室吸收光谱和CO的Zenith看起来的空气发射光谱。光谱仪是在NASA资金下开发的4.6 /2.33μm仪器的预光标,并设计用于展示这种组合对流层CO测量的独特垂直信息能力。我们简要介绍了一个专注于这种技术的太空繁殖概念。

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