Infrared and Laser Engineering, Volume. 51, Issue 9, 20210984(2022)
Measurement technique research for the absorptivity of cryogenic radiometer absorbing cavity at the 4 K temperature
[1] A K Vaskuri, M S Stephens, N A Tomlin, et al. High-accuracy room temperature planar absolute radiometer based on vertically aligned carbon nanotubes.. Optics Express, 29, 22533-22552(2021).
[2] T Gentile, J Hpuston, J Haadis, et al. The NIST high accuracy cryogenic radiometer. Applied Optics, 35, 1056-1067(1996).
[3] C Hoyt, P Foukal. Cryogenic radiometers and their application to the metrology. Metrologia, 28, 163-167(1991).
[4] A Gamouras, A D W Todd, É Côté, et al. The development of the advanced cryogenic radiometer facility at NRC. Journal of Physics: Conference Series, 972, 012014(2018).
[5] H Y Gan, Y W He, X L Liu, et al. Absolute cryogenic radiometer for high ccuracy optical radiant power measurement in a wide spectral range. Chinese Optics Letters, 17, 091201(2019).
[6] X L Yi, W Fang, Y D Lin, et al. Experimental characteristics and measurement accuracy evaluation of space cryogenic absolute radiometric primary benchmark. Optics and Precision Engineering, 29, 10-20(2021).
[7] C M Liu, X S Shi, H D Chen, et al. Ultraviolet spectral responsivity of silicon trap detectors traceable to a cryogenic radiometer. Acta Photonica Sinica, 45, 0912002(2016).
[8] H B Liu, X S Shi, W B Xu, et al. Long-wave infrared absolute spectral responsivity scale by using an absolute cryogenic radiometer. Spectroscopy and Spectral Analysis, 40, 3680-3685(2020).
[9] S Li, J Wang, J P Zhang, et al. Highly accurate calibration of optical radiation based on cryogenic radiometer at visible and near infrared spectrum (488-944 nm). Acta Optica Sinica, 25, 609(2005).
[10] W W Pang, X B Zheng, J J Li, et al. Comparison experiment of cryogenic radiometer of different calibration optical path. Infrared and Laser Engineering, 45, 0317004(2016).
[11] W W Pang, X B Zheng, J J Li, et al. Calibration of absolute spectral responsivity at 1064 nm of transfer detector against cryogenic radiometer. Infrared and Laser Engineering, 44, 3812-3818(2015).
[12] Z M Zhang, H C Tang, R U Datla, et al. Thermal modeling of absolute cryogenic radiometers. Journal of Heat Transfer, 116, 993-998(1994).
[13] X G Zhuang, H B Liu, P J Zhang, et al. Absorptance analysis of blackbody cavity in cryogenic radiometer. Spectroscopy and Spectral Analysis, 39, 2018-2022(2019).
[14] A V PRokhorov, L M Hanssenanssen. Effective emissivity of a cylindrical cavity with an inclined bottom: I. isothermal cavity. Metrologia, 41, 421-431(2004).
[15] X L Yi, Z L Yang, X Ye, et al. Absorptance measurement for sloping bottom cavity of cryogenic radiometer. Optics and Precision Engineering, 23, 2733-2739(2015).
Get Citation
Copy Citation Text
Bing Yu, Jihong Fan, Linguang Yuan, Yan Li, Lei Guo, Xiao Wang, Junwei Chu, Yan Qin, Yunan Sun, Deng Zhang, Yue You, Weiqi Jin. Measurement technique research for the absorptivity of cryogenic radiometer absorbing cavity at the 4 K temperature[J]. Infrared and Laser Engineering, 2022, 51(9): 20210984
Category: Photoelectric measurement
Received: Dec. 17, 2021
Accepted: Jan. 13, 2022
Published Online: Jan. 6, 2023
The Author Email: