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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >An entropy production based method for determining the position diffusion's coefficient of a quantum Brownian motion
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An entropy production based method for determining the position diffusion's coefficient of a quantum Brownian motion

机译:基于熵的基于方法,用于确定Quantum Brownian运动的位置扩散系数

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摘要

Quantum Brownian motion of a harmonic oscillator in the Markovian approximation is described by the respective Caldeira-Leggett master equation. This master equation can be brought into Lindblad form by adding a position diffusion term to it. The coefficient of this term is either customarily taken to be the lower bound dictated by the Dekker inequality or determined by more detailed derivations on the linearly damped quantum harmonic oscillator. In this paper, we explore the theoretical possibilities of determining the position diffusion term's coefficient by analyzing the entropy production of the master equation.
机译:通过相应的Caldeira-Leggett总体方程描述了Markovian近似值中的谐波振荡器的量子布朗运动。 通过向其添加位置扩散术语,可以将该总体方程置于Lindblad形式。 该术语的系数通常被认为是由DEKKER不等式决定的下限,或者通过线性阻尼量子谐波振荡器上的更详细的推导来确定。 在本文中,我们通过分析主方程的熵产生来探讨确定位置扩散项系数的理论可能性。

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