On the Crystallization of 2D Hexagonal Lattices

被引:0
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作者
Weinan E
Dong Li
机构
[1] Princeton University,Department of Mathematics and Program in Applied and Computational Mathematics
[2] Institute for Advanced Study,School of Mathematics
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关键词
Bond Angle; Side Length; Hexagonal Lattice; Triangular Lattice; Quadratic Variation;
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摘要
It is a fundamental problem to understand why solids form crystals at zero temperature and how atomic interaction determines the particular crystal structure that a material selects. In this paper we focus on the zero temperature case and consider a class of atomic potentials V = V2 + V3, where V2 is a pair potential of Lennard-Jones type and V3 is a three-body potential of Stillinger-Weber type. For this class of potentials we prove that the ground state energy per particle converges to a finite value as the number of particles tends to infinity. This value is given by the corresponding value for a optimal hexagonal lattice, optimized with respect to the lattice spacing. Furthermore, under suitable periodic or Dirichlet boundary condition, we show that the minimizers do form a hexagonal lattice.
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页码:1099 / 1140
页数:41
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