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Including quantum effects in the dynamics of complex (i.e.,large) molecular systems

机译:将量子效应包括在复杂(即大型)分子系统的动力学中

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摘要

The development in the 1950s and 1960s of crossed molecular beam methods for studying chemical reactions at the single-collision molecular level stimulated the need and desire for theoretical methods to describe these and other dynamical processes in molecular systems.Chemical dynamics theory has made great strides in the ensuing decades,so that methods are now available for treating the quantum dynamics of small molecular systems essentially completely.For the large molecular systems that are of so much interest nowadays (e.g.,chemical reactions in solution,in clusters,in nanostructures,in biological systems,etc.),however,the only generally available theoretical approach is classical molecular dynamics (MD) simulations.Much effort is currently being devoted to the development of approaches for describing the quantum dynamics of these complex systems.This paper reviews some of these approaches,especially the use of semiclassical approximations for adding quantum effects to classical MD simulations,also showing some new versions that should make these semiclassical approaches even more practical and accurate.
机译:1950年代和1960年代用于研究单碰撞分子水平化学反应的交叉分子束方法的发展激发了对描述分子系统中这些过程和其他动力学过程的理论方法的需求和期望。化学动力学理论在分子动力学方面取得了长足的进步。在随后的几十年中,因此,现在可以使用各种方法来基本上完全地处理小分子系统的量子动力学。对于当今备受关注的大分子系统(例如,溶液中,簇中,纳米结构中,生物中的化学反应)然而,唯一普遍可用的理论方法是经典分子动力学(MD)模拟。目前,人们正致力于开发用于描述这些复杂系统的量子动力学的方法。本文对此进行了综述。方法,特别是使用半经典近似为经典MD添加量子效应模拟,还显示了一些新版本,这些新版本应使这些半经典方法更加实用和准确。

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