首页> 外文期刊>中国物理:英文版 >Performance of an irreversible quantum refrigeration cycle
【24h】

Performance of an irreversible quantum refrigeration cycle

机译:不可逆量子制冷循环的性能

获取原文
获取原文并翻译 | 示例
       

摘要

A new model of a quantum refrigeration cycle composed of two adiabatic and two isomagnetic field processes is established. The working substance in the cycle consists of many non-interacting spin-1/2 systems. The performance of the cycle is investigated, based on the quantum master equation and semi-group approach. The general expressions of several important performance parameters, such as the coefficient of performance, cooling rate, and power input, are given. It is found that the coefficient of performance of this cycle is in the closest analogy to that of the classical Carnot cycle. Furthermore, at high temperatures the optimal relations of the cooling rate and the maximum cooling rate are analysed in detail. Some performance characteristic curves of the cycle are plotted, such as the cooling rate versus the maximum ratio between high and low "temperatures" of the working substances, the maximum cooling rate versus the ratio between high and low "magnetic fields" and the "temperature" ratio between high and low reservoirs. The obtained results are further generalized and discussed, so that they may be directly applied to describing the performance of the quantum refrigerator using spin-J systems as the working substance. Finally, the optimum characteristics of the quantum Carnot and Ericsson refrigeration cycles are derived by analogy.
机译:建立了由两个绝热和两个等磁场过程组成的量子制冷循环新模型。循环中的工作物质由许多非相互作用的spin-1 / 2系统组成。基于量子主方程和半群方法研究了循环的性能。给出了几个重要性能参数的一般表达式,例如性能系数,冷却速率和功率输入。发现该循环的性能系数与经典卡诺循环最相似。此外,在高温下,详细分析了冷却速率和最大冷却速率的最佳关系。绘制了循环的一些性能特征曲线,例如冷却速率与工作物质高低温度之间的最大比率,最大冷却速率与高低磁场之间的比率以及温度高低水库之间的比例。对获得的结果进行进一步的概括和讨论,以便可以将它们直接用于描述使用spin-J系统作为工作物质的量子制冷机的性能。最后,通过类推得出量子卡诺和爱立信量子制冷循环的最佳特性。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号