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Diffusivity of adatoms on plasma-exposed surfaces determined from the ionization energy approximation and ionic polarizability

机译:从电离能近似和离子极化率确定暴露于等离子体的表面上的原子的扩散率

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摘要

Microscopic surface diffusivity theory based on atomic ionization energy concept is developed to explain the variations of the atomic and displacement polarizations with respect to the surface diffusion activation energy of adatoms in the process of self-assembly of quantum dots on plasma-exposed surfaces. These polarizations are derived classically, while the atomic polarization is quantized to obtain the microscopic atomic polarizability. The surface diffusivity equation is derived as a function of the ionization energy. The results of this work can be used to fine-tune the delivery rates of different adatoms onto nanostructure growth surfaces and optimize the low-temperature plasma based nanoscale synthesis processes.
机译:建立了基于原子电离能概念的微观表面扩散理论,解释了在等离子体暴露表面上量子点的自组装过程中,原子极化和位移极化相对于原子的表面扩散活化能的变化。这些极化是经典得出的,而原子极化被量化以获得微观的原子极化率。表面扩散率方程是电离能的函数。这项工作的结果可用于微调不同原子在纳米结构生长表面上的传输速率,并优化基于低温等离子体的纳米级合成工艺。

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