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Excess Entropy Production in Quantum System: Quantum Master Equation Approach

机译:量子系统中过量的熵产生:量子主方程法

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摘要

For open systems described by the quantum master equation (QME), we investigate the excess entropy production under quasistatic operations between nonequilibrium steady states. The average entropy production is composed of the time integral of the instantaneous steady entropy production rate and the excess entropy production. We propose to define average entropy production rate using the average energy and particle currents, which are calculated by using the full counting statistics with QME. The excess entropy production is given by a line integral in the control parameter space and its integrand is called the Berry–Sinitsyn–Nemenman (BSN) vector. In the weakly nonequilibrium regime, we show that BSN vector is described by lnρ˘0 and ρ0 where ρ0 is the instantaneous steady state of the QME and ρ˘0 is that of the QME which is given by reversing the sign of the Lamb shift term. If the system Hamiltonian is non-degenerate or the Lamb shift term is negligible, the excess entropy production approximately reduces to the difference between the von Neumann entropies of the system. Additionally, we point out that the expression of the entropy production obtained in the classical Markov jump process is different from our result and show that these are approximately equivalent only in the weakly nonequilibrium regime.
机译:对于由量子主方程(QME)描述的开放系统,我们研究了在非平衡稳态之间的准静态操作下产生的过量熵。平均熵产生由瞬时稳态熵产生率和过量熵产生的时间积分组成。我们建议使用平均能量和粒子电流定义平均熵生产率,这些平均能量和粒子电流是通过使用QME的全计数统计来计算的。多余的熵产生由控制参数空间中的线积分给出,其积分被称为Berry-Sinitsyn-Nemenman(BSN)向量。在弱非平衡状态下,我们证明了BSN向量由lnρ˘0和ρ0描述,其中ρ0是QME的瞬时稳态,而ρ˘0是QME的瞬时稳态,这是通过反转Lamb shift项的符号给出的。如果系统的哈密顿量是非简并的,或者Lamb位移项可以忽略不计,则过量的熵产生大约减少到系统的von Neumann熵之间的差。另外,我们指出经典马尔可夫跳跃过程中获得的熵产生的表达式与我们的结果不同,并且表明它们仅在弱非平衡状态下近似相等。

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