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单分子-光子制冷泵的热力学行为

秦伟平 秦冠仕 张继森 吴长锋 王继伟 杜国同

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单分子-光子制冷泵的热力学行为

秦伟平, 秦冠仕, 张继森, 吴长锋, 王继伟, 杜国同

THERMODYNAMIC BEHAVIOR OF SMPC

QIN WEI-PING, QIN GUAN-SHI, ZHANG JI-SHEN, WU CHANG-FENG, WANG JI-WEI, DU GUO-TONG
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  • 通过对发生光跃迁时的声子参与频度、热光转换效率以及制冷效率的研究,从理论上描述了单分子-光子泵的热力学行为.利用热分布次数作为热分布时间的衡量尺度,研究了单分子光子泵的制冷效率,得出了与其他研究者的实验曲线相符合的理论计算结果.解释了制冷功率随波长变化曲线在制冷区发生弯曲的原因.研究了单分子-光子泵的最大制冷效率,从理论上确定了引起制冷效率最大的激发波长位于单分子-光子泵吸收带红边的四分之一处.得出只有晶体材料才可能获得最大制冷效率的结论
    The thermodynamic behavior of single molecule-photon cryocooler(SMPC)was described by the study of participating frequency of phonons in light transitions, heat-light converting efficiency and cooling efficiency. The times of heat distribution were taken as a time scale in the investigation of cooling efficiency. The cooling efficiency curve obtained from our theory has the same shape of experiment curves obtained by other researchers. The reason of a bending of cooling efficiency curve appearing in the cooling region was given. The greatest cooling efficiency of SMPC was investigated, and it is obtained that the best wavelength, which results in the greatest cooling efficiency,is located at the point of one fourth exciting band width from the red edge. As a main conclusion, crystal-line materials are the sole kind of promising materials for obtaining the greatest cooling efficiency.
    • 基金项目: 国家重点基础研究发展规划(批准号:G1998061309);中国科学院重点基金;国家自然科学基金(批准号:59872042)资助的课题.
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  • 文章访问数:  7145
  • PDF下载量:  2569
  • 被引次数: 0
出版历程
  • 收稿日期:  2000-05-20
  • 修回日期:  2000-11-19
  • 刊出日期:  2001-04-05

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