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首页> 外文期刊>The Journal of Chemical Physics >Ehrenfest and classical path dynamics with decoherence and detailed balance
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Ehrenfest and classical path dynamics with decoherence and detailed balance

机译:ehrenfest和经典的道路动态,带动和详细的平衡

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We present a semiclassical approach for nonadiabatic molecular dynamics based on the Ehrenfest method with corrections for decoherence and detailed balance. Decoherence is described via a coherence penalty functional that drives dynamics away from regions in Hilbert space characterized by large values of coherences. Detailed balance is incorporated by modification of the off-diagonal matrix elements with a quantum correction factor used in semiclassical approximations to quantum time-correlation functions. Both decoherence and detailed balance corrections introduce nonlinear terms to the Schrodinger equation. At the same time, the simplicity of fully deterministic dynamics and a single trajectory for each initial condition is preserved. In contrast, surface hopping is stochastic and requires averaging over multiple realization of the stochastic process for each initial condition. The Ehrenfest-decoherence-detailed-balance (Ehrenfest-DDB) method is adapted to the classical path approximation and ab initio time-dependent density functional theory and applied to an experimentally studied nanoscale system consisting of a fluorophore molecule and an scanning tunneling microscopy tip and undergoing current-induced charge injection, cooling, and recombination. Ehrenfest-DDB produces time scales that are similar to those obtained with decoherence induced surface hopping, which is a popular nonadiabatic molecular dynamics technique applied to condensed matter. At long times, Ehrenfest-DDB dynamics slows down considerably because the detailed balance correction makes off-diagonal elements go to zero on approach to Boltzmann equilibrium. The Ehrenfest-DDB technique provides efficient means to study quantum dynamics in large systems. Published under license by AIP Publishing.
机译:我们提出用于基于所述爱伦菲斯特方法与修正为退相干和细致平衡非绝热分子动力学半经典方法。退相干经由相干惩罚官能驱动动力学从Hilbert空间区域远离,其特征在于相干的大的值进行说明。细致平衡是通过在半经典近似量子时间相关函数中使用的量子校正因子的非对角矩阵元素的修改并入。两个退相干和细致平衡修正引入非线性项到薛定谔方程。与此同时,完全确定性动力学的简单性以及对于每个初始条件的单个轨迹被保留。相反,表面跳频是随机的,需要在随机过程的多个实现针对每个初始状态平均化。所述爱伦菲斯特-退相干-详述平衡(爱伦菲斯特-DDB)方法适用于经典路径近似和从头时间依赖密度泛函理论和应用于由荧光团分子的实验研究的纳米级系统和一个扫描隧道显微镜尖端和经受电流引起电荷注入,冷却,和重组。爱伦菲斯特-DDB产生的时间尺度是类似于与退相干诱导的表面跳频,这是一个受欢迎的非绝热分子动力学技术应用于凝聚态获得的那些。在很长的时间,爱伦菲斯特-DDB动态减慢显着,因为详细的平衡校正,使非对角线元素变为零的方法来平衡波兹曼。所述爱伦菲斯特-DDB技术提供有效的手段来研究量子动力学在大型系统中。通过AIP发布在许可证下发布。

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