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H-theorem and Maxwell Demon in Quantum Physics

机译:H-Theorem和Maxwell Demon在量子物理学中

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The Second Law of Thermodynamics states that temporal evolution of an isolated system occurs with non-diminishing entropy. In quantum realm, this holds for energy-isolated systems the evolution of which is described by the so-called unital quantum channel. The entropy of a system evolving in a non-unital quantum channel can, in principle, decrease. We formulate a general criterion of unitality for the evolution of a quantum system, enabling a simple and rigorous approach for finding and identifying the processes accompanied by decreasing entropy in energy-isolated systems. We discuss two examples illustrating our findings, the quantum Maxwell demon and heating-cooling process within a two-qubit system.
机译:热力学的第二律规定了孤立系统的时间演变发生在非减少熵。在量子领域中,这适用于能量隔离系统,其演化由所谓的起价量子通道描述。原则上,在非起始量子通道中发展的系统的熵可以减少。我们制定了Quantum系统演进的一般标准,实现了一种简单且严谨的方法来查找和识别通过降低能量 - 隔离系统中的熵伴随的过程。我们讨论了两个Qubit系统内的调查结果,量子麦克斯韦恶魔和加热冷却过程的两个例子。

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