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首页> 外文期刊>The Journal of Chemical Physics >Breathing shell model in molecular dynamics simulation: Application to MgO and CaO
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Breathing shell model in molecular dynamics simulation: Application to MgO and CaO

机译:分子动力学模拟中的呼吸壳模型:在MgO和CaO中的应用

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Molecular dynamics (MD) simulation is used to calculate the elastic constants of both MgO and CaO at zero pressure, and their temperature dependences, as well as the temperature-pressure-volume equation of states of the two oxides. The interionic potential is taken to be the sum of pairwise additive Coulomb, van der Waals, and repulsive interactions. In order to account for the observed large departures from the Cauchy relation of the elastic constants of the two oxides, the breathing shell model (BSM) is introduced in MD simulation, in which the repulsive radii of O ions are allowed to deform isotropically under the effects of other ions in the crystal, with each core and breathing shell being linked by a harmonic spring with force constant k. Required energy parameters, including k, were derived empirically to reproduce the observed molar volumes and elastic constants of the two oxides at ambient conditions, and their temperature dependences as accurately as possible. The MD simulation with BSM is very satisfactory in reproducing accurately not only the observed large Cauchy violations,but also the measured molar volumes and individual elastic constants of the two oxides over wide temperature ranges, at zero pressure. In addition the MD simulation reproduces accurately the measured volume compression data of CaO up to 60 GPa at 300 K. Here we present the MD simulated temperature-pressure-volume equation of state of CaO as a useful internal pressure calibration standard at high temperatures and high pressures. (C) 1998 American Institute of Physics. [References: 42]
机译:分子动力学(MD)仿真用于计算零压力下MgO和CaO的弹性常数,它们的温度依赖性以及两种氧化物的状态的温度-压力-体积方程。离子势被认为是成对加性库仑,范德华力和排斥相互作用的总和。为了解决观测到的两种氧化物的弹性常数与柯西关系的较大偏差,在MD模拟中引入了呼吸壳模型(BSM),在该模型中,允许O离子的排斥半径在各向同性下变形。晶体中其他离子的作用,每个核和呼吸壳通过力常数为k的谐波弹簧连接。根据经验得出所需的能量参数(包括k),以尽可能精确地重现两种氧化物在环境条件下观察到的摩尔体积和弹性常数,以及它们对温度的依赖性。用BSM进行的MD模拟不仅令人满意地精确再现了所观察到的大柯西违规现象,而且还精确地再现了在零压力下在宽温度范围内测得的两种氧化物的摩尔体积和各自的弹性常数。此外,MD模拟可以精确地再现在300 K时高达60 GPa的CaO的体积压缩数据。在这里,我们介绍了MD模拟的CaO状态的温度-压力-体积方程,作为高温和高压下有用的内部压力校准标准。压力。 (C)1998美国物理研究所。 [参考:42]

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