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首页> 外文期刊>Surface Science >Flat-surface, step-edge, facet-facet, and facet-step diffusion barriers in growth of a Pb mesa
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Flat-surface, step-edge, facet-facet, and facet-step diffusion barriers in growth of a Pb mesa

机译:Pb台面生长中的平面,台阶边缘,刻面和刻面扩散障碍

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摘要

We obtain important energy parameters for understanding growth kinetics of a faceted Pb mesa. Specifically, extensive calculations of diffusion barriers are performed for a Pb adatom: (i) on a flat Pb( 111) or Pb(001) surface; (ii) crossing a single A- or B-step edge on Pb(111) surface; (iii) crossing a facet-facet edge between Pb(111) facet and Pb(001) facet, or between Pb(111) facet and Pb(111) facet; (iv) crossing a facet-step joint between Pb(001) facet and A-step, or between Pb(111) facet and B-step, using a modified embedded atom method. We investigate two different diffusion modes: direct hopping of an adatom, and exchange mechanism between an adatom and substrate atom(s). Direct hopping diffusion is more favorable over exchange mechanism for an adatom on a flat (111) or (001) surface. Diffusion crossing A-step edge favors direct hopping, while diffusion crossing B-step edge favors exchange mechanism. For facet-facet or facet-step diffusion, the exchange mechanism is always favorable over direct hopping. The diffusion barriers obtained here have been used to reasonably explain the intriguing kinetic growth of a Pb mesa in recent experiments. In addition, we also discuss low-index planes of Pb[110] crystallo-graphic zone related to the choices of sidewalls in the formation of a Pb mesa by calculating corresponding surface free energies.
机译:我们获得重要的能量参数,以了解多面铅台面的生长动力学。具体而言,对Pb吸附原子进行了广泛的扩散势垒计算:(i)在平坦的Pb(111)或Pb(001)表面上; (ii)跨过Pb(111)表面上的一个A或B台阶边缘; (iii)在Pb(111)小平面和Pb(001)小平面之间或Pb(111)小平面和Pb(111)小平面之间横切小平面小平面边缘; (iv)使用改进的嵌入原子方法在Pb(001)刻面与A阶之间或Pb(111)刻面与B阶之间交叉刻面阶梯关节。我们研究了两种不同的扩散模式:原子的直接跳跃,以及原子与底物原子之间的交换机制。对于平坦的(111)或(001)表面上的原子,直接跳跃扩散优于交换机制。扩散穿过A步边缘有利于直接跳跃,而扩散穿过B步边缘有利于交换机制。对于分面或分步扩散,交换机制始终优于直接跳变。在最近的实验中,此处获得的扩散势垒已被用来合理解释Pb台面的有趣动力学增长。此外,我们还通过计算相应的表面自由能,讨论了与Pb台面形成中的侧壁选择有关的Pb [110]晶体学区的低折射率平面。

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