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Spectral Irradiance and Radiance responsivity Calibrations using Uniform Sources (SIRCUS) facility at NIST

机译:使用NIST的均匀光源(SIRCUS)设施进行光谱辐照度和辐射度响应度校准

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Detectors have historically been calibrated for spectral power responsivity at the National Institute of Standards and Technology (NIST) using a lamp-monochromator system to tune the wavelength of the excitation source. Silicon detectors can be calibrated in the visible spectral region with uncertainties at the 0.1% level. However, uncertainties increase dramatically when measuring an instrument's spectral irradiance or radiance responsivity. In addition, the uncertainties are even larger in the UV and IR ranges. We will discuss a new laser-based facility for Spectral Irradiance and Radiance responsivity Calibrations using Uniform Sources (SIRCUS) that was developed to calibrate instruments directly in irradiance or radiance mode with uncertainties approaching those available for spectral power responsivity calibrations. In this facility, high-power, tunable lasers are introduced into an integrating sphere using optical fibers, producing uniform, quasi-Lambertian, high radiant flux sources. Reference standard irradiance detectors, calibrated directly against national primary standards for spectral power responsivity, are used to determine the irradiance at a reference plane. Knowing the measurement geometry, the source radiance can be readily determined as well. The radiometric properties of the SIRCUS source coupled with state-of-the-art transfer standard radiometers whose responsivities are directly traceable to primary national radiometric scales, result in typical combined standard uncertainties in irradiance and radiance responsivity calibrations less than 0.1 % in the visible (larger in the UV and IR). Details of the facility are presented and examples of unique calibrations possible in the facility are given, including system-level responsivity calibrations in support of the National Aeronautics and Space Administration's (NASA's) remote sensing activities.
机译:历史上,在美国国家标准技术研究院(NIST),已经使用灯单色仪系统对检测器的光谱功率响应进行了校准,以调谐激发源的波长。硅探测器可以在可见光谱范围内校准,不确定度为0.1%。但是,测量仪器的光谱辐照度或辐射响应度时,不确定性会急剧增加。此外,在紫外线和红外线范围内的不确定性甚至更大。我们将讨论一种新的基于激光的,用于使用均匀光源(SIRCUS)进行光谱辐照度和辐射度响应度校准的工具,该设施旨在直接在辐照度或辐射度模式下对仪器进行校准,其不确定性接近光谱功率响应度校准可用的不确定度。在该设施中,使用光纤将高功率,可调谐激光器引入积分球,从而产生均匀的准朗伯型高辐射通量源。直接针对光谱功率响应性的国家主要标准对参考标准辐照度检测器进行了校准,用于确定参考平面上的辐照度。知道了测量几何形状,也可以轻松确定源辐射。 SIRCUS辐射源的辐射特性与可直接追溯到主要国家辐射尺度的最新传输标准辐射仪相结合,导致可见光和辐射响应率标定中典型的组合标准不确定度小于0.1%( UV和IR较大)。介绍了该设施的详细信息,并给出了该设施中可能进行的唯一校准的示例,包括支持国家航空航天局(NASA)遥感活动的系统级响应度校准。

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