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Finite-time quantum measurement cooling beyond the Carnot limit

机译:超过卡诺极限的有限时间量子测量冷却

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摘要

We proposed the finite-time cycle model of a measurement-based quantum cooler, where the invasive measurement provides the power to drive the cooling cycle. Such a cooler may be regarded as an alternative thought experiment of Maxwell’s demon. The measurement-feedback information is capable of moving heat from the cold to hot bath without any work input and even making the maximum coefficient of performance larger than the Carnot limit. The causes that this seemingly paradoxical result does not violate the laws of thermodynamics can be clearly explained through the derivation of a generalized Clausius inequality including the mutual information.
机译:我们提出了基于测量的量子冷却器的有限时间周期模型,其中侵入式测量提供了驱动冷却循环的动力。这样的冷却器可以看作是麦克斯韦恶魔的另类思想实验。测量反馈信息能够在没有任何功输入的情况下将热量从冷浴转移到热水浴,甚至使最大性能系数大于卡诺极限。这个看似矛盾的结果不违反热力学定律的原因可以通过推导广义克劳修斯不等式(包括互信息)来清楚地解释。

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