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Optimization and benchmarking of a perturbative Metropolis Monte Carlo quantum mechanics/molecular mechanics program

机译:扰动大都市蒙特卡罗量子力学/分子力学计划的优化与基准

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In this work, we present an optimized perturbative quantum mechanics/molecular mechanics (QM/MM) method for use in Metropolis Monte Carlo simulations. The model adopted is particularly tailored for the simulation of molecular systems in solution but can be readily extended to other applications, such as catalysis in enzymatic environments. The electrostatic coupling between the QM and MM systems is simplified by applying perturbation theory to estimate the energy changes caused by a movement in the MM system. This approximation, together with the effective use of GPU acceleration, leads to a negligible added computational cost for the sampling of the environment. Benchmark calculations are carried out to evaluate the impact of the approximations applied and the overall computational performance. Published by AIP Publishing.
机译:在这项工作中,我们介绍了一种优化的扰动量子力学/分子力学(QM / mm)方法,用于Metropolis Monte Carlo模拟。 采用的模型特别定制用于溶液中的分子系统的模拟,但可以容易地扩展到其他应用,例如酶环境中的催化。 通过施加扰动理论来简化QM和MM系统之间的静电耦合以估计由MM系统的运动引起的能量变化。 这种近似与有效使用GPU加速度,导致环境采样的额外增加的计算成本。 进行基准计算,以评估应用的近似的影响和整体计算性能。 通过AIP发布发布。

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