4 K high frequency pulse tube cryocooler used for terahertz space application

Author:

Quan Jia,Liu Yanjie,Liu Dong,Zhang Kun,Liang Jingtao,Li Jing,Yao Qijun,Shi Shengcai

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference15 articles.

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2. Schneider N, Urban J, Baron P (2009) Potential of radio telescopes for atmospheric line observations: 1. Observation principles and transmission curves for selected sites. ar-Xiv:0902.1642

3. Nast T, Olsen J, Champagne P et al (2008) Development of 4.5 K pulse tube cryocooler for superconducting electronics. In: Weisend JG II (ed) Cryogenic engineering conference & international cryogenic materials conference, Spokane, Washington, USA, June 2007. Advances in cryogenic engineering, vol 53. American Institute of Physics, Melville, New York, pp 881–886

4. Webber RJ, Dotsenko VV, Delmas J et al (2009) Evaluation of a 4 K 4-stage pulse tube cryocooler for superconducting electronics. In: Miller SD, Ross RG Jr (eds) Proceedings of the 15th international cryocooler conference, Long Beach, California, June, 2008. Cryocoolers 15, ICC Press, Boulder Colorado, pp 657–664

5. Dotsenko VV, Delmas J, Webber RJ et al (2009) Integration of a 4-Stage 4 K pulse tube cryocooler prototype with a superconducting integrated circuit. IEEE Trans Appl Supercond 19:1003–1007

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1. Frequency response characteristics of a thermally coupled three-stage Stirling-type pulse tube cryocooler capable of achieving 110 mW@7 K;International Journal of Refrigeration;2023-01

2. Calculation and Experimental Study of a 4 K Gas-Coupled Pulse Tube Cryocooler Driven by a Single Compressor;Proceedings of the 28th International Cryogenic Engineering Conference and International Cryogenic Materials Conference 2022;2023

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5. Theoretical Analyses and Design of a 4 K Gas-Coupled Multi-Bypass Stirling-Type Pulse Tube Cryocooler;Journal of Thermal Science;2022-08-26

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