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On-the-Fly CASPT2 Surface-Hopping Dynamics

机译:在飞行的Caspt2表面跳跃动态

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We report the development of programs for on the-fly surface-hopping dynamics simulations in the gas and condensed phases on the potential energy surfaces computed by multistate multireference perturbation theory (XMS-CASPT2) with full internal contraction. On-the-fly non adiabatic dynamics simulations are made possible by improving the algorithm for XMS-CASPT2 nuclear energy gradient and derivative coupling evaluation. The program is interfaced to a surface-hopping dynamics program, NEWTON-X, and a classical molecular dynamics package, TINKER, to realize such simulations. On-the-fly XMS-CASPT2 surface-hopping dynamics simulations of 9H-adenine and an anionic GFP model chromophore (para-hydroxybenzilideneimidazolin-5-one) in water are presented to demonstrate the applicability of our program to sizable systems. Our program is implemented in the BAGEL package, which is publicly available under the GNU General Public License.
机译:我们报告了通过具有全内部收缩的多态多引导扰动理论(XMS-CASPT2)计算的潜在能量表面上的气体和冷凝阶段的飞行阶段的方案的开发。 通过改善XMS-CASPT2核能梯度和衍生耦合评估的算法,可以实现逐次非绝热动力学模拟。 该程序与表面跳跃动态程序,牛顿-x和经典分子动力学封装,修补筛网接口,以实现这种模拟。 提供了9H-腺嘌呤和阴离子GFP模型发色体(Para-Hydroxybenzinendeneimidazolin-5-One)的表面跳跃动力学模拟,以证明我们的程序对大量系统的适用性。 我们的计划是在Bagel套餐中实施,该套件在GNU通用公共许可下公开提供。

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