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Incorporation of a QM/MM Buffer Zone in the Variational Double Self-Consistent Field Method

机译:在变分双自洽场方法中纳入QM / MM缓冲区

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摘要

The explicit polarization (X-Pol) potential is an electronic-structure-based polarization force field, designed for molecular dynamics simulations and modeling of biopolymers. In this approach, molecular polarization and charge transfer effects are explicitly treated by a combined quantum mechanical and molecular mechanical (QM/MM) scheme, and the wave function of the entire system is variationally optimized by a double self-consistent field (DSCF) method. In the present article, we introduce a QM buffer zone for a smooth transition from a QM region to an MM region. Instead of using the Mulliken charge approximation for all QM/MM interactions, the Coulombic interactions between the adjacent fragments are determined directly by electronic structure theory. The present method is designed to accelerate the speed of convergence of the total energy and charge density of the system.
机译:显式极化(X-Pol)电位是基于电子结构的极化力场,设计用于分子动力学模拟和生物聚合物建模。在这种方法中,通过结合量子力学和分子力学(QM / MM)方案显着地处理了分子极化和电荷转移效应,并通过双自洽场(DSCF)方法对整个系统的波函​​数进行了变异优化。 。在本文中,我们介绍了一个QM缓冲区,用于从QM区域到MM区域的平滑过渡。并非对所有QM / MM相互作用都使用Mulliken电荷近似,而是直接通过电子结构理论确定相邻片段之间的库仑相互作用。设计本方法以加速系统的总能量和电荷密度的收敛速度。

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