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Solution of the master equation for Wigner's quasiprobability distribution in phase space for the Brownian motion of a particle in a double well potential

机译:双阱势中粒子布朗运动的相空间Wigner拟拟概率分布主方程的解

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Quantum effects in the Brownian motion of a particle in the symmetric double well potential V(x)=ax(2)/2+bx(4)/4 are treated using the semiclassical master equation for the time evolution of the Wigner distribution function W(x,p,t) in phase space (x,p). The equilibrium position autocorrelation function, dynamic susceptibility, and escape rate are evaluated via matrix continued fractions in the manner customarily used for the classical Fokker-Planck equation. The escape rate so yielded has a quantum correction depending strongly on the barrier height and is compared with that given analytically by the quantum mechanical reaction rate solution of the Kramers turnover problem. The matrix continued fraction solution substantially agrees with the analytic solution. Moreover, the low-frequency part of the spectrum associated with noise assisted Kramers transitions across the potential barrier may be accurately described by a single Lorentzian with characteristic frequency given by the quantum mechanical reaction rate. (c) 2007 American Institute of Physics.
机译:使用半经典主方程对Wigner分布函数W的时间演化处理对称双阱势V(x)= ax(2)/ 2 + bx(4)/ 4中粒子的布朗运动中的量子效应(x,p,t)在相空间(x,p)中。平衡位置自相关函数,动态磁化率和逃逸率通过矩阵连续分数以传统Fokker-Planck方程惯用的方式进行评估。如此产生的逸出速率具有强烈依赖于势垒高度的量子校正,并且将其与通过克莱默斯周转问题的量子力学反应速率解进行分析给出的逸出速率进行比较。基质连续分数溶液与分析溶液基本一致。而且,与噪声辅助的克雷默斯跨越势垒的跃迁相关的频谱的低频部分可以由单个洛伦兹精确地描述,其特征频率由量子机械反应速率给出。 (c)2007年美国物理研究所。

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