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Static relaxation of bcc crystal fragments using a Lennard-Jones potential: Transition to hexagonal or cubic close packing

机译:使用Lennard-Jones势使bcc晶体碎片静态弛豫:过渡到六方或立方紧密堆积

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摘要

Computer relaxation of fragments of an atomic bcc crystal, using a Lennard-Jones atom-atom interaction potential, yields a variety of close-packed polycrystalline structures, with well-defined grain boundaries between ordered fcc and hcp domains.rnThe strong dependence of the results on shape and size of the fragments, as well as on their orientation and precise position with respect to the bcc matrix, is attributed to the surface structure, which apparently determines in detail what will happen upon relaxation, and suggests that the new phase starts ('nucleates') at the surface and proceeds inwards. Although the nature of the relation between surface structure and final result remains obscure, and no trends are apparent, single crystals with fcc or hcp structures can be obtained, with hep being dominant. Possible effects of non-hydrostatic pressure are discussed in connection with constrained relaxations. The results are affected by simulated 'thermal' disorder, however small.rnRadial distribution functions, and simulated diffraction patterns are presented, the latter in comparison with some experimentally observed traces of small Argon clusters.
机译:利用Lennard-Jones原子与原子的相互作用势,用计算机弛豫原子bcc晶体的碎片会产生各种紧密堆积的多晶结构,在有序的fcc和hcp域之间具有明确的晶界.rn结果的强烈依赖性碎片的形状和大小,以及其相对于密件抄送矩阵的方向和精确位置,都归因于表面结构,表面结构显然决定了松弛后会发生什么,并暗示新的相开始(在表面形成“核”并向内前进。尽管表面结构和最终结果之间关系的性质仍然模糊不清,并且没有明显的趋势,但是可以得到具有fcc或hcp结构的单晶,其中以hep为主导。非静水压力的可能影响与约束松弛有关。结果受模拟的“热”紊乱的影响,但是较小。径向分布函数和模拟衍射图谱均与模拟的小氩团簇的痕迹进行了比较。

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