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Electromigration-guided composition patterns in thin alloy films: A computational study

机译:薄合金薄膜中的电动迁移引导的组合物图案:计算研究

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摘要

Via computation of a continuum dynamical model of the diffusion and electromigration, this paper demonstrates the feasibility of guiding the formation of the stripe composition patterns in the thin surface layers of the crystal alloy films. By employing the systematic parametric computational analysis it is revealed how such properties of the pattern as the aerial number density of the stripes and the stripe in-plane orientation are influenced by the major physical factors that are not limited to the electric field strength and its direction angle in the plane, but also include a number of parameters that originate in the anisotropy of diffusion in the particular crystallographically-oriented surface layer. By following the insights from this analysis the real patterns hopefully can be created in a dedicated experiment.
机译:通过计算扩散和电迁移的连续动态模型,本文展示了引导在晶体合金薄膜的薄表面层中形成条纹组合物图案的可行性。通过采用系统参数计算分析,揭示了作为条纹的空中数密度和条纹面内取向的图案的这种性质是如何受到不限于电场强度的主要物理因素及其方向的影响在平面中的角度,还包括许多源自特定晶形表面层中的扩散各向异性的参数。通过遵循此分析的见解,希望在专用实验中可以创建真正的模式。

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