[1]Martin J E, Fox N P, Key P J. A cryogenic radiometer for absolute radiometric measurements [J]. Metrologia, 1985, 21(3): 147-155.
[2]Quinn T J,Martin J E. Cryogenic radiometry, prospects for further improvements in accuracy [J]. Metrologia, 1991, 28(3):155-161.
[3]Kohler R, Goebel R, Stock M, et al. International comparison of cryogenic radiometers[C]//Proceedings of SPIE—The International Society for Optical Engineering. 1996.
[4]Fu Y T, Liu X L, Wang Y C, et al. Miniaturized integrating sphere light sources based on LEDs for radiance responsivity calibration of optical imaging microscopes[J]. Optics Express, 2020, 28(21):32199-32213.
[5]Clare J F, Nield K M. Realization of a photometric scale based on cryogenic radiometry[J]. Metrologia,1998 ,35(4):251-254.
[6]林延东,吕亮. 基于低温辐射计的光探测器响应度基准[J]. 计量学报,2012,33(6):494-498.
Lin Y D, Lü L. Responsivity Standard of Optical Detector Based on the Cryogenic Radiometer[J]. Acta Metrologica Sinica, 2012, 33(6):494-498.
[7]Gentile T R, Houston J M, Cromer C L. Realization of a scale of absolute spectral response using the National Institute of Standards and Technology high-accuracy cryogenic radiometer[J]. Applied Optics, 1996, 35(22):4392-4403.
[8]Menegotto T, Thiago F, Simoes M, et al. Realization of Optical Power Scale Based on Cryogenic Radiometry and Trap Detectors[J]. IEEE Transactions on Instrumentation & Measurement, 2015, 64(6):1702-1708.
[9]He Y W, Gan H Y, Liu W D, et al. A new spectral responsivity calibration comparison of InGaAs photodiode based on cryogenic radiometer fundamentals at the National Institute of Metrology of China[C]//Optical Metrology and Inspection for Industrial Applications VII. Beijing, China, 2020.
[10]Yoon H W, Gibson C E, Barnes P Y. Realization of the National Institute of Standards and Technology detector-based spectral irradiance scale[J]. Applied Optics, 2002, 41(28):5879-5890.
[11]刘晓英,刘巨芬,王景辉,等. 0.9 μm光电高温计应用单固定点延伸和多固定点内插的分度方法比较[J]. 计量学报,2021,42(8):1000-1005.
Liu X Y, Liu J F, Wang J H, et al. Comparison of Scale Division Methods between Single-fixed-point Extrapolation and Multi-fixed-point Interpolation for 0.9μm Pyrometers[J]. Acta Metrologica Sinica, 2021,42(8):1000-1005.
[12]庄新港,刘红博,张鹏举,等. 低温辐射计热结构设计与分析[J]. 物理学报,2019,68(6):27-33.
Zhang X G, Liu H B, Zhang P J, et al. Design and analysis of thermo-structure for cryogenic radiometer [J]. Acta Physica Sinica, 2019, 68(6):27-33.
[13]史学舜,徐楠,刘长明,等. 400~1700 nm绝对光谱响应度校准和量值传递[J]. 计量学报,2017,38(6):681-685.
Shi X S, Xu N, Liu C M, et al. Calibration and value transfer of absolute spectral responsivity between 400nm and 1700nm[J]. Acta Metrologica Sinica, 2017,38(6):681-685.
[14]Fan J H, Yang Z J, Hou X Q, et al. The technique of measuring absolute spectral responsivity of InGaAs detector based on cryogenic radiometer[C]//The International Society for Optical Engineering. Xi’an, China, 2005.
[15]Liu W D, Xu N, He Y W, et al. Mid-infrared spectral responsivity scale based on an absolute cryogenic radiometer and a tunable quantum cascade laser[J]. Metrologia, 2021, 58(2):025003.
[16]Xu N, Gan H Y, Wang Y Y, et al. Comparison measurement of absolute power responsivity of silicon photodetector between He-Ne laser and supercontinuum white light source [C]// Optical Metrology and Inspection for Industrial Applications VII. Beijing, China, 2020.
[17]Xu N, Lin Y D, Gan H Y, et al. Spectral responsivity calibration of silicon photodetectors using monochromator-based cryogenic radiometer [C]// Optical Measurement Technology and Instrumentation. Beijing, China, 2016.
[18]刘想靓,甘海勇,赫英威,等. 高精度宽光谱低温绝对辐射计研制[J].计量科学与技术,2021,65(2):39-43.
Liu X L, Gan H Y, He Y W, et al. Development of High-Precision Wide-Spectrum Absolute Cryogenic Radiometer[J]. Metrology Science and Technology,2021,65(2):39-43.
[19]高占科,袁玲玲,江帆. 海洋温度计量校准比对结果分析[J]. 计量学报, 2022, 43(2): 268-273.
Gao Z K,Yuan L L, Jiang F. Analysis of Results about the Comparison of Marine Temperature Calibration[J]. Acta Metrologica Sinica, 2022, 43(2): 268-273.
[20]JJF 1117—2010计量比对[S]. |