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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Combining Iteration-Free Polarization with Large Time Step Stochastic-Isokinetic Integration
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Combining Iteration-Free Polarization with Large Time Step Stochastic-Isokinetic Integration

机译:用大型时间步随机性直升机集成结合迭代极化

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In order to accelerate molecular dynamics simulations using polarizable force fields, we combine a new extended Lagrangian approach that eliminates the self-consistent field step (iEL/0-SCF) with a stochastic integration scheme that allows for a long time step using a multiple time scale algorithm (SIN(R)). We consider different algorithms for the combined scheme that places different components of the nonbonded forces into different time scales, as well as splitting individual nonbonded forces across time scales, to demonstrate that the combined method works well for bulk water as well as for a concentrated salt solution, aqueous peptide, and solvated protein. Depending on system and desired accuracy, the iEL/0-SCF and SIN(R) combination yields lower bound computa- tional speed-ups of similar to 6-8 relative to a molecular dynamics Verlet integration using a standard SCF solver implemented in the reference program TINKER 8.1. The combined approach embodies a significant advance for equilibrium simulations in the canonical ensemble of many-body potential energy surfaces for condensed phase systems with speed-ups that exceed what is possible by either method alone.
机译:为了使用可极化的力字段加速分子动力学模拟,我们将新的扩展拉格朗日方法结合起来,该方法利用随机积分方案来消除自洽的场间步骤(IEL / 0-SCF),该方案允许使用多个时间长时间的步骤缩放算法(SIN(R))。我们认为不同的算法的组合方案,使得非粘合力的不同组分放入不同的时间尺度,以及跨越时尺度分裂单个非粘合力,以证明组合方法适用于散装水以及浓缩的盐溶液,肽和溶剂化蛋白质。根据系统和所需的精度,IEL / 0-SCF和SIN(R)组合产生了相对于使用参考中实现的标准SCF解算器的分子动力学法定集成相似于6-8的下限计算速度UPS程序修补器8.1。该组合方法体现了用于许多身体势能的规范集合的平衡模拟的显着进展,用于冷凝的相位系统,其具有超出任一方法可以通过的速度UPS。

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