• Infrared and Laser Engineering
  • Vol. 44, Issue 3, 827 (2015)
Wang Chao* and Hu Zhonghui
Author Affiliations
  • [in Chinese]
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    DOI: Cite this Article
    Wang Chao, Hu Zhonghui. Temperature control technology of cryogenic infrared target source[J]. Infrared and Laser Engineering, 2015, 44(3): 827 Copy Citation Text show less
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    [3] Schwarz M, Hofmann R, Giacosa F. Gap in the black-body spectrum at low temperature[J]. Journal of High Energy Physics, 2007(02): 091.

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    [5] Yang Jianbin, Zhang Wenrui, Bai Shu, et al. Temperature analysis for infrared radiation calibration plane blackbody[J]. Vacuum & Cryogenics, 2011(1): 007. (in Chinese)

    [6] Dai Yinghong, Wu Jianfeng, Zhang Yazhou, et al. Development of a calibration device of low temperature blackbody with large aperture[J]. Journal of Astronautic Metrology and Measurement, 2012, 32(5): 49-52. (in Chinese)

    [7] Balaj O P, Berg C B, Reitmeier S J, et al. A novel design of a temperature-controlled FT-ICR cell for low-temperature black-body infrared radiative dissociation (BIRD) studies of hydrated ions[J]. International Journal of Mass Spectrometry, 2009, 279(1): 5-9.

    [8] Yang Shiming, Tao Wenshuan. Heat Transfer Theory[M]. 4th ed. Beijing: Higher Education Publishing House, 2006: 6-8, 121, 404-408. (in Chinese)

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    [1] Changpeng Yang, Kan Xu, Liang Xue, Jinyin Huang, Xingang Yu, Yinnian Liu, Yunfei Song, Mingjian He. Temperature control technology for extra large surface blackbody based on two-phase fluid[J]. Infrared and Laser Engineering, 2022, 51(12): 20220195

    Wang Chao, Hu Zhonghui. Temperature control technology of cryogenic infrared target source[J]. Infrared and Laser Engineering, 2015, 44(3): 827
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