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First high-frequency pulse tube cryocooler down to 2.5 K and its promising application in China’s deep space exploration

查看全文 作  者:YANG [1,5]Biao;GAO [1,5]ZhaoZhao;CHEN [4,5]LiuBiao;LIU [2]SiXue;ZHOU [2]Qiang;GUO [1]Jia;CUI [1]Chen;ZHU [4]WenXiu;JIN [3]Hai;ZHOU [4,5]Yuan;WANG [1,5]JunJie 高影响力作者 机构地区:[1]Chinese Academy of Sciences,Key Laboratory of Technology on Space Energy Conversion,Technical Institute of Physics and Chemistry,Beijing 100190,China;[2]Beijing Key Laboratory of Space Thermal Control Technology,Beijing Institute of Spacecraft System Engineering,China Academy of Space Technology,Beijing 100094,China;[3]Department of Astronomy,Tsinghua University,Beijing 100084,China;[4]Chinese Academy of Sciences,Key Laboratory of Cryogenics,Technical Institute of Physics and Chemistry,Beijing 100190,China;[5]University of Chinese Academy of Sciences,Beijing 100049,China高影响力机构 出  处:《Science China(Technological Sciences)》索引2023年第66卷第8期,共3页高影响力期刊 基  金:supported by the National Natural Science Foundation of China(Grant Nos.12073058 and U1831203);the China National Space Administration(Grant Nos.D050104 and D040305);the Youth Innovation Promotion Association of the Chinese Academy of Sciences(Grant No.2019030)。 摘  要:From the Moon,Mars,to the central body of the solar system,the Sun,and even exoplanets,deep space exploration[1]has promoted research on the formation and evolution of the solar system and the universe,especially,in terms of tracing life’s origins.The inherent characteristic of high energy flux density determines that space detectors cannot fully dissipate heat through radiative cooling under the cosmic microwave background radiation temperature of 2.7 K. 关 键 词:PLANET UNIVERSE MICROWAVE
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