School of chemistry, Univertsity of Leeds, Leeds, LS2 9JT, UK.
Faraday Discuss. 2011;153:105-16; discussion 189-212. doi: 10.1039/c1fd00034a.
This article briefly describes recently developed Multiconfigurational Ehrenfest dynamics method to simulate quantum dynamics in systems with many degrees of freedom. The central idea is to guide the trajectories of basis wave functions by means of the Ehrenfest trajectories. The amplitudes of guided basis functions are coupled through a system of linear equations. The approach has been applied to simulations of nonadiabatic dynamics in Spin-Boson model and in pyrazine molecule. A new application to nonadiabatic dynamics in 24D model of pyrazine, where good spectrum for is obtained with the basis of only 34 basis Ehrenfest configurations is reported. This application provides the ground for future fully quantum direct dynamics. Another new application to the model of sticking to the surface described by the System-Bath Hamiltonian is presented to demonstrate the broadness of the approach, which can be applied to both electronically adiabatic and nonadiabatic dynamics. For all applications the results are in good agreement with those of MCTDH, which is very difficult to achieve with other trajectory-based methods. Therefore MCE can serve as a starting point for future use with "on the fly" direct dynamics. MCE provides an efficient fully quantum method capable of catching coherent dynamics in multidimentional systems, which is a necessary step for developing and understanding coherent control in realistic quantum systems.
本文简要描述了最近开发的多组态 Ehrenfest 动力学方法,用于模拟具有多个自由度的系统中的量子动力学。其核心思想是通过 Ehrenfest 轨迹引导基波函数的轨迹。通过一组线性方程耦合引导基函数的幅度。该方法已应用于 Spin-Boson 模型和吡嗪分子中非绝热动力学的模拟。报告了一种新的应用,即用于吡嗪的 24D 模型中非绝热动力学,其中仅用 34 个基 Ehrenfest 构型的基础就获得了良好的光谱。该应用为未来的全量子直接动力学提供了基础。还提出了一个新的应用,用于描述由系统-浴哈密顿量描述的表面附着模型,以展示该方法的广泛性,它可应用于电子绝热和非绝热动力学。对于所有应用,结果都与 MCTDH 的结果非常吻合,这是其他基于轨迹的方法很难实现的。因此,MCE 可以作为未来“实时”直接动力学的起点。MCE 提供了一种有效的全量子方法,能够在多维系统中捕捉相干动力学,这是开发和理解现实量子系统中相干控制的必要步骤。