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Nano-sized Adsorbate Structure Formation in Anisotropic Multilayer System

机译:各向异性多层体系中纳米级吸附物结构的形成

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In this article, we study dynamics of adsorbate island formation in a model plasma-condensate system numerically. We derive the generalized reaction-diffusion model for adsorptive multilayer system by taking into account anisotropy in transfer of adatoms between neighbor layers induced by electric field. It will be found that with an increase in the electric field strength, a structural transformation from nano-holes inside adsorbate matrix toward separated nano-sized adsorbate islands on a substrate is realized. Dynamics of adsorbate island sizes and corresponding distributions are analyzed in detail. This study provides an insight into details of self-organization of adatoms into nano-sized adsorbate islands in anisotropic multilayer plasma-condensate systems.
机译:在本文中,我们将对模型血浆-冷凝物系统中吸附剂岛形成的动力学进行数值研究。通过考虑电场引起的相邻层之间吸附原子转移的各向异性,我们得出了吸附多层系统的广义反应扩散模型。将会发现,随着电场强度的增加,实现了从吸附物基质内部的纳米孔向基板上分离的纳米尺寸的吸附物岛的结构转变。详细分析了吸附剂岛尺寸和相应分布的动力学。这项研究提供了对各向异性多层等离子体-冷凝物系统中吸附原子自组织成纳米级吸附物岛的细节的深入了解。

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