Datla R U, Stock K, Parr A C, Hoyt C C, Miller P J, Foukal P V
Appl Opt. 1992 Dec 1;31(34):7219-25. doi: 10.1364/AO.31.007219.
An active cavity radiometer of the electrical substitution type with a cone receiver that operates at 2-4 K has been developed for measuring radiant fluxes in the dynamic range of 20 nW to 100 microW within an uncertainty of +/-1% (2sigmalevel). It is a broadband absolute detector with a flat overall absorption efficiency that is >99% for radiation from the visible to long-wavelength IR. The system is designed based on thermal modeling and experimental measurements of concepts. It has been installed in the cryogenic chamber for low-background infrared radiation calibrations at the National Institute of Standards and Technology (NIST) for testing cryogenic blackbody sources, detectors, and optical components. Its time constant, responsivity, and nonequivalence error have been measured. They are in agreement with design predictions. Radiant power measurements of an amplitude-stabilized He-Ne laser beam with the radiometer and an industry standard photodiode detector, QED-200, have been intercompared and found to be in agreement. The intercomparison ratio of the measurements with the absolute cryogenic radiometer and QED-200 was 1.004 in the 75-100-microW range with an uncertainty of 0.5% (the 3sigma level).
已开发出一种带有锥形接收器的电替代型有源腔辐射计,其工作温度为2 - 4K,用于测量20 nW至100 μW动态范围内的辐射通量,不确定度为±1%(2σ水平)。它是一种宽带绝对探测器,整体吸收效率平坦,对从可见光到长波红外的辐射吸收率>99%。该系统基于热模型和概念的实验测量进行设计。它已安装在国家标准与技术研究院(NIST)的低温腔室中,用于低背景红外辐射校准,以测试低温黑体源、探测器和光学元件。已测量了其时间常数、响应度和非等效误差,结果与设计预测一致。用该辐射计和行业标准光电二极管探测器QED - 200对振幅稳定的氦氖激光束的辐射功率测量值进行了比对,发现两者一致。在75 - 100 μW范围内,绝对低温辐射计与QED - 200测量值的比对比率为1.004,不确定度为0.5%(3σ水平)。