首页> 外文期刊>The Journal of Chemical Physics >A dual length scale method for plane-wave-based,simulation studies of chemical systems modeled using mixed ab initio/empirical force field descriptions
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A dual length scale method for plane-wave-based,simulation studies of chemical systems modeled using mixed ab initio/empirical force field descriptions

机译:基于平面波的双长度尺度方法,用于化学系统的模拟研究,使用混合的从头算起/经验力场描述进行建模

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Mixed ab initio/empirical force-field simulation studies,calculations in which one part of the system is treated using a fully ab initio description and another part is treated using an empirical description,are becoming increasingly popuaar.Here,the ability of the commonly used,plane wave-based generalized gradient approximation to density functional theory is extended to model systems in which the electrons are assumed to be localized in a single small region of space,that is,itself,embedded within a large chemically insert bath.This is accomplished by introducing two length scales,so that the rapidly varying,short range,electron-electron and electron-atom interactions,arising from the region where the electrons are localized,can be treated using an appropriately large plane wave basis,while the corresponding,slowly varying,long range interactions of the electrons with the full system of bath,can be treated using a small basis.Briefly,a novel Cardinal B-spline based formalism is employed to derive a smooth,differentiable,and rapidly convergent (with respect to the small basis) expression for thd total electronic energy,which explicitly contains the two length scales.The method allows reciprocal space based techniques designed to treat clusters,wires,sufraces and solids/liquids (open,and 1-D and 2-D periodic boundary conditions,respectively) to be utilized.Other plane wave-based "mixed" methods are restricted to clusters.The new methodology,which scales as N log N at fixed size of the chemically active region, has been implemented for parallel computing platforms and tested through applications to both model and realistic problems including an enzyme, human carbonic anhydrase II solvated in an explicit bath of water molecules.
机译:混合的从头算起/经验力场模拟研究,计算的结果越来越普遍。在这种计算中,系统的一部分使用完全的从头开始描述来处理,另一部分使用经验的描述来处理。在这里,常用的能力,基于平面波的密度泛函理论的广义梯度逼近被扩展到模型系统,在该模型系统中,假定电子被局限在单个小的空间区域内,也就是说,电子本身被嵌入在一个大的化学插入槽中。通过引入两个长度尺度,以便可以使用适当大的平面波基础来处理从电子定位区域产生的快速变化,短程,电子-电子和电子-原子相互作用。电子与整个浴系统之间的变化,远距离相互作用,可以用很小的基础来解决。简而言之,一种基于基数B样条的新颖形式主义是典型的旨在得出总电子能量的平滑,可微和快速收敛(相对于小基数)的表达式,该表达式明确包含两个长度标尺。该方法允许基于互易空间的技术来处理簇,电线,子母线和子母线。可以使用固体/液体(分别是开放,一维和二维周期性边界条件)。其他基于平面波的“混合”方法仅限于簇。新方法在固定时缩放为N log N已针对并行计算平台实现了化学活性区域的大小,并通过对模型和现实问题的应用进行了测试,包括在水分子中直接溶解的酶,人类碳酸酐酶II。

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