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用于硅-二氧化硅的电荷优化多体力场的从头算参数化:纳米结构中的验证与热输运

Ab initio parameterization of a charge optimized many-body forcefield for Si-SiO2: Validation and thermal transport in nanostructures.

作者信息

France-Lanord Arthur, Soukiassian Patrick, Glattli Christian, Wimmer Erich

机构信息

Materials Design SARL, 92120 Montrouge, France.

SPEC, CEA, CNRS, Université Paris-Saclay, CEA Saclay, 91191 Gif-sur-Yvette, France.

出版信息

J Chem Phys. 2016 Mar 14;144(10):104705. doi: 10.1063/1.4943396.

Abstract

In an effort to extend the reach of current ab initio calculations to simulations requiring millions of configurations for complex systems such as heterostructures, we have parameterized the third-generation Charge Optimized Many-Body (COMB3) potential using solely ab initio total energies, forces, and stress tensors as input. The quality and the predictive power of the new forcefield are assessed by computing properties including the cohesive energy and density of SiO2 polymorphs, surface energies of alpha-quartz, and phonon densities of states of crystalline and amorphous phases of SiO2. Comparison with data from experiments, ab initio calculations, and molecular dynamics simulations using published forcefields including BKS (van Beest, Kramer, and van Santen), ReaxFF, and COMB2 demonstrates an overall improvement of the new parameterization. The computed temperature dependence of the thermal conductivity of crystalline alpha-quartz and the Kapitza resistance of the interface between crystalline Si(001) and amorphous silica is in excellent agreement with experiment, setting the stage for simulations of complex nanoscale heterostructures.

摘要

为了将当前的从头算计算扩展到对复杂系统(如异质结构)进行需要数百万个构型的模拟,我们仅使用从头算总能量、力和应力张量作为输入,对第三代电荷优化多体(COMB3)势进行了参数化。通过计算包括SiO2多晶型物的内聚能和密度、α-石英的表面能以及SiO2晶体和非晶相的声子态密度等性质,评估了新力场的质量和预测能力。与来自实验、从头算计算以及使用包括BKS(范·贝斯特、克莱默和范·桑滕)、ReaxFF和COMB2在内的已发表力场的分子动力学模拟数据进行比较,结果表明新参数化总体上有所改进。计算得到的晶体α-石英热导率的温度依赖性以及晶体Si(001)与非晶硅界面的卡皮查电阻与实验结果非常吻合,为复杂纳米级异质结构的模拟奠定了基础。

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