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Quantum Brayton Refrigeration Cycle with Finite-Size Bose–Einstein Condensates

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【作者】 袁结红阮慧琳刘德华何济洲王建辉

【Author】 Jiehong Yuan;Huilin Ruan;Dehua Liu;Jizhou He;Jianhui Wang;Department of Physics, Nanchang University;State Key Laboratory of Surface Physics, and Department of Physics, Fudan University;

【通讯作者】 王建辉;

【机构】 Department of Physics, Nanchang UniversityState Key Laboratory of Surface Physics, and Department of Physics, Fudan University

【摘要】 We consider a quantum Brayton refrigeration cycle consisting of two isobaric and two adiabatic processes,using an ideal Bose gas of finite particles confined in a harmonic trap as its working substance. Quite generally,such a machine falls into three different cases, classified as the condensed region, non-condensed phase, and regime across the critical point. When the refrigerator works near the critical region, both figure of merit and cooling load are significantly improved due to the singular behavior of the specific heat, and the coefficient of performance at maximum figure of merit is much larger than the Curzon–Ahlborn value. With the machine in the non-condensed regime, the coefficient of performance for maximum figure of merit agrees well with the Curzon–Ahlborn value.

【Abstract】 We consider a quantum Brayton refrigeration cycle consisting of two isobaric and two adiabatic processes,using an ideal Bose gas of finite particles confined in a harmonic trap as its working substance. Quite generally,such a machine falls into three different cases, classified as the condensed region, non-condensed phase, and regime across the critical point. When the refrigerator works near the critical region, both figure of merit and cooling load are significantly improved due to the singular behavior of the specific heat, and the coefficient of performance at maximum figure of merit is much larger than the Curzon–Ahlborn value. With the machine in the non-condensed regime, the coefficient of performance for maximum figure of merit agrees well with the Curzon–Ahlborn value.

【关键词】 figureEinsteincondensedmeritconfinedadiabaticharmonicclassifiedcyclesingular
【基金】 supported by the National Natural Science Foundation of China(Grant No. 11875034);the Major Program of Jiangxi Provincial Natural Science Foundation (Grant No. 20224ACB201007);financial support from the Opening Project of Shanghai Key Laboratory of Special Artificial Microstructure Materials and Technology
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2023年10期
  • 【分类号】O469
  • 【下载频次】2
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