...
首页> 外文期刊>Journal of chemical theory and computation: JCTC >Low-Temperature Quantum Fokker-Planck and Smoluchowski Equations and Their Extension to Multistate Systems
【24h】

Low-Temperature Quantum Fokker-Planck and Smoluchowski Equations and Their Extension to Multistate Systems

机译:低温量子FOKKER-PLANCK和SMOLUCHOWSKI方程及其扩展到多态系统

获取原文
获取原文并翻译 | 示例
           

摘要

Simulating electron-nucleus coupled dynamics poses a nontrivial challenge and an important problem in the investigation of ultrafast processes involving coupled electronic and vibrational dynamics. Because irreversibility of the system dynamics results from thermal activation and dissipation caused by the environment, in dynamical studies, it is necessary to include heat bath degrees of freedom in the total system. When the system dynamics involves high-energy electronic transitions, the environment is regarded to be in a low-temperature regime and we must treat it quantum mechanically. In this Article, we present rigorous and versatile approaches for investigating the dynamics of open systems with coupled electronic and vibrational degrees of freedom within a fully quantum mechanical framework. These approaches are based on a quantum Fokker-Planck equation and a quantum Smoluchowski equation employing a heat bath with an Ohmic spectral density, with non-Markovian low-temperature correction terms, and extensions of these equations to the case of multistate systems. The accuracy of these equations was numerically examined for a single-state Brownian system, while their applicability was examined for multistate double-well systems by comparing their results with those of the fewest-switch surface hopping and Ehrenfest methods with a classical Markovian Langevin force. Comparison of the transient absorption spectra obtained using these methods clearly reveals the importance of the quantum low-temperature correction terms. These equations allow us to treat nonadiabatic dynamics in an efficient way, while maintaining numerical accuracy. The C++ source codes that we developed, which allow for the treatment of the phase and coordinate space dynamics with any single-state or multistate potential forms, are provided as Supporting Information.
机译:模拟电子 - 核耦合动力学在耦合电子和振动动力学涉及耦合电子和振动动力学的超快过程中存在非竞争挑战和重要问题。由于系统动力学的不可逆转性来自由环境引起的热激活和耗散,因此在动态研究中,必须包括总系统中的热浴自由度。当系统动态涉及高能电子转换时,将环境视为低温制度,我们必须机械地将量子视为。在本文中,我们呈现严格和多功能的方法,用于研究在完全量子机械框架内具有耦合电子和振动自由度的开放系统的动态。这些方法基于量子FOKKER-PLANCK方程和使用具有欧姆光谱密度的热浴的Quantum smoluchowski方程,具有非马氏体低温校正术语,以及这些方程的扩展到多态系统的情况。对于单态布朗系统进行了数量检查了这些等式的准确性,而通过将它们的结果与具有经典马尔豪森力的母马门队的结果进行比较,通过将它们的结果进行比较,对多态双孔系统进行了适用性。使用这些方法获得的瞬态吸收光谱的比较清楚地揭示了量子低温校正项的重要性。这些方程允许我们以有效的方式处理非抗脂肪动态,同时保持数值准确性。我们开发的C ++源代码,其允许使用任何单态或多态潜在形式进行处理的相位和坐标空间动态,作为支持信息。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号