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表面跳跃的最新进展:2011 - 2015年

Recent Progress in Surface Hopping: 2011-2015.

作者信息

Wang Linjun, Akimov Alexey, Prezhdo Oleg V

机构信息

Department of Chemistry, Zhejiang University , Hangzhou 310027, China.

Department of Chemistry, State University of New York at Buffalo , Buffalo, New York 14260-3000, United States.

出版信息

J Phys Chem Lett. 2016 Jun 2;7(11):2100-12. doi: 10.1021/acs.jpclett.6b00710. Epub 2016 May 23.

Abstract

Developed 25 years ago, Tully's fewest switches surface hopping (FSSH) has proven to be the most popular approach for simulating quantum-classical dynamics in a broad variety of systems, ranging from the gas phase, to the liquid and solid phases, to biological and nanoscale materials. FSSH is widely adopted as the fundamental platform to introduce modifications as needed. Significant progress has been made recently to enhance the accuracy and efficiency of the surface hopping technique. Various limitations of the standard FSSH-associated with quantum nuclear effects, interference and decoherence, trivial or "unavoided" crossings, superexchange, and representation dependence-have been lifted. These advances are needed to allow one to treat many important phenomena in chemistry, physics, materials, and related disciplines. Examples include charge transport in extended systems such as organic solids, singlet fission in molecular aggregates, Auger-type exciton multiplication, recombination and relaxation in quantum dots and other nanoscale materials, Auger-assisted charge transfer, nonradiative luminescence quenching, and electron-hole recombination. This Perspective summarizes recent advances in the surface hopping formulation of nonadiabatic dynamics and provides an outlook on the future of surface hopping.

摘要

塔利最少跃迁表面跳跃(FSSH)方法是25年前开发的,已被证明是模拟从气相到液相、固相,再到生物和纳米级材料等各种系统中量子-经典动力学最常用的方法。FSSH被广泛用作根据需要引入修改的基础平台。最近在提高表面跳跃技术的准确性和效率方面取得了重大进展。与量子核效应、干涉和退相干、平凡或“不可避免”的交叉、超交换以及表示依赖性相关的标准FSSH的各种局限性已被克服。这些进展是处理化学、物理、材料及相关学科中许多重要现象所必需的。例子包括扩展系统中的电荷传输,如有机固体、分子聚集体中的单线态裂变、俄歇型激子倍增、量子点和其他纳米级材料中的复合与弛豫、俄歇辅助电荷转移、非辐射发光猝灭以及电子-空穴复合。本综述总结了非绝热动力学表面跳跃公式的最新进展,并展望了表面跳跃的未来。

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