地球科学用宽带紧凑型热红外光谱仪的现场标定

W. Johnson, S. Hook, P. Mouroulis, Daniel W. Wilson, S. Gunapala, C. Hill, V. Realmuto, J. Mumolo, B. Eng
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引用次数: 1

摘要

我们的现场研究结果表明,采用量子阱红外光电探测器(QWIP)和基于光栅的戴森光谱仪相结合的紧凑型热红外(EOTIR)高光谱光栅光谱仪具有优异的性能。戴森设计允许一个非常紧凑和光学快速的系统(F/1.6)。由于单片棱镜式光栅的设计,冷却要求被最小化。由于其小尺寸和相对较低的功耗要求,该配置有可能成为轻于空气(LTA)车辆和无人机(UAV)的最佳科学级成像光谱解决方案。QWIP允许最佳的空间和光谱均匀性,并提供足够的响应性,允许在整个EOTIR通带内运行近100mK的噪声等效温差(NEDT)。这些测试是为部署高光谱热红外光谱仪(HyTES)做准备,该光谱仪目前由NASA的仪器孵化器计划(IIP)资助。测试结果显示NEDT,线性以及适用的地球科学发射率目标结果(硅酸盐,水)在阳光直射下测量。还进行了校准,以获得直接水温使用校准良好的传输辐射计同时运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Field calibration of a broadband compact thermal infrared spectrometer for earth science
We present field results showing excellent performance for a compact earth observing thermal infrared (EOTIR) hyperspectral grating spectrometer using a combination of a Quantum Well Infrared Photodetector (QWIP) and grating based Dyson spectrometer. 12The Dyson design allows for a very compact and optically fast system (F/1.6). Cooling requirements are minimized due to the single monolithic prism-like grating design. The configuration has the potential to be the optimal sciencegrade imaging spectroscopy solution for lighter-than-air (LTA) vehicles and unmanned aerial vehicles (UAV) due to its small form factor and relatively low power requirements. The QWIP allows for optimum spatial and spectral uniformity and provides adequate responsivity to allow for near 100mK noise equivalent temperature difference (NEDT) operation across the EOTIR passband. These tests are in preparation for the deployment of the Hypserspectral Thermal Infrared Spectrometer (HyTES) which is currently being funded under NASA's instrument incubator program (IIP). Test results show NEDT, linearity as well as applicable earth science emissivity target results (silicates, water) measured in direct sunlight. A calibration is also performed to derive direct water temperature using a well calibrated transfer radiometer operating simultaneously.
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