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Anharmonic Vibrational States of Solids from DFT Calculations. Part I: Description of the Potential Energy Surface

机译:来自DFT计算的Anharmonic振动状态。 第一部分:潜在能量表面的描述

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A computational approach is presented to compute anharmonic vibrational states of solids from quantum-mechanical DFT calculations by taking into explicit account phonon phonon couplings via the vibrational configuration interaction (VCI) method. The Born-Oppen-heimer potential energy surface (PES) is expanded in a Taylor's series in terms of harmonic normal coordinates, centered at the equilibrium nuclear configuration, is truncated to quartic order, and contains one-mode, two-mode, and three-mode interatomic force constants. The description of the anharmonic terms of the PES involves the numerical evaluation of high-order energy derivatives (cubic and quartic in our case) with respect to nuclear displacements and constitutes the most computationally demanding step in the characterization of anharmonic vibrational states of materials. Part I is devoted to the description of the PES. Four different numerical approaches are presented for the description of the potential, all based on a grid representation of the PES in the basis of the normal coordinates, that require different ingredients (energy and/or forces) to be evaluated at each point (i.e., nuclear configuration) of the grid. The numerical stability and relative computational efficiency of the various schemes for the description of the PES are discussed on two molecular systems (water and methane) and two extended solids (Ice-XI and MgH2). All the presented algorithms are implemented into a developmental version of the CRYSTAL program.
机译:提出了一种计算方法来计算通过振动配置交互(VCI)方法的明确账号声子声子耦合来计算来自量子机械DFT计算的Anharmonic振动状态。出生对立的 - 后足势能表面(PE)在泰勒系列中扩展,在谐波正常坐标,以均衡核配置为中心,被截断到四分之一的顺序,并包含一个模式,两种模式和三个 - 编码的内部力常数。对PE的非谐波术语的描述涉及关于核移位的高阶能源衍生物(立方和四分之一)的数值评估,并构成了厌氧振动态的表征的最大计算苛刻的步骤。第一部分致力于对PE的描述。呈现四种不同的数值方法,用于描述潜在的描述,全部基于正常坐标基于PE的网格表示,其需要在每个点处评估不同成分(即,网格的核配置。在两个分子系统(水和甲烷)和两个延伸的固体(ICE-XI和MGH2)上讨论了对PE的描述的各种方案的数值稳定性和相对计算效率。所有呈现的算法都被实现为晶体程序的发展版本。

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