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Calibration of a CubeSat spectroradiometer with a narrow-band widely tunable radiance source

机译:具有窄带广泛可调光辐射源的立方体光谱仪的校准

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We have developed an SI-traceable narrow-band tunable radiance source based on an optical parametric oscillator (OPO) and an integrating sphere for the calibration of spectroradiometers. The source is calibrated with a reference detector over the ultraviolet/visible spectral range with an uncertainty of <1%. As a case study, a CubeSat spectroradiometer has been calibrated for radiance over its operating range from 370 nm to 480 nm. To validate the results, the instrument has also been calibrated with a traditional setup based on a diffuser and an FEL lamp. Both routes show good agreement within the combined measurement uncertainty. The OPO-based approach could be an interesting alternative to the traditional method, not only because of reduced measurement uncertainty, but also because it directly allows for wavelength calibration and characterization of the instrumental spectral response function and stray light effects, which could reduce calibration time and cost. (C) 2021 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
机译:我们开发了一种基于光学参量振荡器(OPO)和积分球的硅可追踪窄带可调谐辐射源,用于光谱辐射计的校准。使用参考探测器在紫外/可见光谱范围内校准光源,不确定度<1%。作为一个案例研究,CubeSat光谱辐射计在370 nm到480 nm的工作范围内进行了辐射度校准。为了验证结果,还使用基于扩散器和FEL灯的传统设置对仪器进行了校准。这两种方法在综合测量不确定度范围内表现出良好的一致性。基于OPO的方法可能是传统方法的有趣替代方法,不仅因为它降低了测量不确定度,还因为它直接允许对仪器光谱响应函数和杂散光效应进行波长校准和表征,这可以减少校准时间和成本。(c)OSA开放获取出版协议条款下的美国2021光学学会

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