论文标题

采用非马克维亚效应来提高量子奥托冰箱的性能

Employing Non-Markovian effects to improve the performance of a quantum Otto refrigerator

论文作者

Camati, Patrice A., Santos, Jonas F. G., Serra, Roberto M.

论文摘要

将量子热力学扩展到超出标准热力学环境的情况,包括其发展的重要方面。一种情况是分析诱导非马克维亚动力学的结构化环境的热力学后果。我们研究了一个量子奥托冰箱,其中标准的马尔可夫冷储水箱被特定的工程冷储水库取代,该储层可能会在量子制冷剂系统上引起马尔可夫或非马克维亚动力学。可以通过改变制冷剂和储层之间的耦合来互换这两个动态状态。非马克维亚效应的增加将与耦合强度的提高有关,这反过来将使能量存储在相互作用中,相互作用能量越来越相关。我们展示了功绩的数字,性能系数和冷却能力,不可忽略的相互作用能量的变化,讨论了这种效果如何导致冰箱性能高估。最后,我们还考虑了具有实验可行参数的自旋量子冰箱的数值模拟,以更好地说明工程冷储层引起的非马克维亚效应。我们认为,中等的非马克维亚动力学表现要比马尔可夫人或强大的非马克维亚运营政权更好。

The extension of quantum thermodynamics to situations that go beyond standard thermodynamic settings comprises an important and interesting aspect of its development. One such situation is the analysis of the thermodynamic consequences of structured environments that induce a non-Markovian dynamics. We study a quantum Otto refrigerator where the standard Markovian cold reservoir is replaced by a specific engineered cold reservoir which may induce a Markovian or non-Markovian dynamics on the quantum refrigerant system. The two dynamical regimes can be interchanged by varying the coupling between the refrigerant and the reservoir. An increase of non-Markovian effects will be related to an increase of the coupling strength, which in turn will make the energy stored in the interaction Hamiltonian, the interaction energy, increasingly relevant. We show how the figures of merit, the coefficient of performance and the cooling power, change for non-negligible interaction energies, discussing how neglecting this effect would lead to an overestimation of the refrigerator performance. Finally, we also consider a numerical simulation of a spin quantum refrigerator with experimentally feasible parameters to better illustrate the non-Markovian effects induced by the engineered cold reservoir. We argue that a moderate non-Markovian dynamics performs better than either a Markovian or a strong non-Markovian regime of operation.

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