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Gluing Potential Energy Surfaces with Rare Event Simulations

机译:使用稀有事件模拟粘合势能表面

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摘要

We develop a new method combining replica exthange transition interface sampling with two distinct potential energy surfaces. The method can be used to combine different levels of theory in a simulation of a molecular process (e.g., a chemical reaction), and it can serve as a dynamical version of QM-MM, connecting classical dynamics with Ab Initio dynamics in the time domain. This new method, which we coin QuanTIS, could be applied to use accurate but expensive density functional theory based molecular dynamics for the breaking and making of chemical bonds, while the diffusion of reactants in the solvent are treated with classical force fields. We exemplify the method by applying it to two simple model systems (an ion dissociation reaction and a classical hydrogen model), and we discuss a possible extension of the method in which classical force field parameters for chemical reactions can be optimized on the fly.
机译:我们开发了一种新方法,该方法将复制品过渡过渡界面采样与两个不同的势能面结合在一起。该方法可用于在分子过程(例如化学反应)的模拟中结合不同层次的理论,并且可以用作QM-MM的动力学版本,在时域中将经典动力学与Ab Initio动力学联系起来。这种我们称为QuanTIS的新方法可以用于基于精确但昂贵的基于密度泛函理论的分子动力学来破坏和形成化学键,同时用经典的力场处理反应物在溶剂中的扩散。我们通过将其应用于两个简单的模型系统(离子解离反应和经典氢模型)来举例说明该方法,并讨论了该方法的可能扩展,其中可以动态优化化学反应的经典力场参数。

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