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Kinetics of second layer nucleation with permeable steps

机译:渗透步骤第二层成核的动力学

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摘要

The critical island size for second layer nucleation is a basic parameter which determines the mechanism of growth and in turn the morphology of the growing surface. When it is larger than the mean distance between the islands layer-by-layer growth takes place. In the opposite case 3D mounds are formed. The critical island size for second layer nucleation is calculated by taking into account the ability of adatoms to cross the step surrounding the island without joining the kink sites (the effect of the step permeability). We have found that the mean field approximation fails to give solution in the case of permeable steps. By making use of the probabilistic approach for derivation of the nucleation frequency on top of the first layer island we show that the critical size decreases with increasing degree of permeability. This is due to the contribution of atoms from the area surrounding the island which is especially important at the early stage of deposition where the average size of the first layer islands is small. The decrease of the critical size is steeper at higher temperatures or smaller densities of the first layer nuclei and in turn larger areas around the islands which feed the latter. The rate of growth of the first level island remains unaffected by the step permeability as the adatoms always join the step after several (or many) attempts under the condition of complete condensation. An important conclusion is that the step permeability could give rise to a transition from planar to 3D growth.
机译:第二层成核的临界岛尺寸是一个基本参数,它决定了生长机理,进而决定了生长表面的形态。当它大于岛之间的平均距离时,会逐层增长。在相反的情况下,形成3D土丘。第二层成核的关键岛尺寸是通过考虑吸附原子跨岛周围台阶而不连接扭结部位的能力(台阶渗透性的影响)来计算的。我们发现在渗透步骤的情况下,平均场近似无法给出解。通过利用概率方法推导第一层岛顶部的成核频率,我们表明临界尺寸随渗透率的增加而减小。这是由于来自岛周围区域的原子的贡献,这在沉积的第一层岛的平均大小较小的早期阶段尤其重要。在较高温度或第一层核的密度较小时,临界尺寸的减小更为陡峭,进而在岛上的区域面积更大,从而为第一层核供能。一级渗透岛的生长速率不受阶跃渗透性的影响,因为在完全凝结的条件下,经过多次(或多次)尝试后,吸附原子始终会加入阶跃。一个重要的结论是,阶跃导磁率可能会导致从平面到3D生长的过渡。

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