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Effects of surface topography on the collective diffusion of interacting adsorbed particles

机译:表面形貌对相互作用吸附颗粒集体扩散的影响

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Collective diffusion of particles with repulsive nearest-neighbor interactions on bivariate surfaces is studied through Monte Carlo simulation, in the framework of the Kubo-Green theory. Shallow and deep adsorbing sites form l x l patches distributed at random or in chessboard-like ordered domains on a two-dimensional square lattice. The influence of the energetic correlation and the lateral interactions on the jump and collective diffusion coefficients are analyzed by simulating the coverage fluctuations in the grand canonical ensemble and the mean-square displacements of particles in the canonical ensemble. The combination of topography and lateral coupling is shown to produce interesting effects such as different filling regimes as well as strong effects on the coverage dependence of the transport coefficients. (C) 2015 Elsevier B.V. All rights reserved.
机译:在Kubo-Green理论的框架下,通过蒙特卡洛模拟研究了具有排斥最近邻相互作用的双粒子在表面的集体扩散。浅和深的吸附位点形成1 x 1的斑块,这些斑块随机分布或分布在二维方格上的棋盘状有序域中。通过模拟大正则合集中的覆盖范围波动和正则合集中颗粒的均方位移,分析了能量相关性和横向相互作用对跃迁和集体扩散系数的影响。地形和横向耦合的组合显示出产生有趣的效果,例如不同的填充方式以及对传输系数的覆盖依存性的强烈影响。 (C)2015 Elsevier B.V.保留所有权利。

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