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首页> 外文期刊>Physical review >Energy barriers for Pb adatom diffusion on stepped ultrathin Pb(111) quantum nanofilms: First-principles calculations
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Energy barriers for Pb adatom diffusion on stepped ultrathin Pb(111) quantum nanofilms: First-principles calculations

机译:Pb ADATOM扩散在阶梯式超薄Pb(111)量子纳米螺纹的能量屏障:第一原理计算

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摘要

Various properties of Pb(111) nanofilms, prototypical quantum films, have been studied extensively. However, key ab initio-level energy barriers for Pb adatom diffusion on stepped Pb(111) nanofilm surfaces are still not available. Using first-principles density functional theory, we calculate these barriers for films with thicknesses of few monolayers (ML). We find that two-atom exchange is always much more favorable than direct hopping to cross A- or B-type steps. Ehrlich-Schwoebel (ES) barriers for downward transport to a higher-coordination step-edge site depend strongly on the film thickness. For such transport from 2- to 1-ML terraces, or from 4- to 3-ML terraces, there is no an ES barrier, but large ES barriers of more than 100 meV are found from 3- to 2-ML terraces. We also obtain the barriers for diffusion along the step edges and find that these step-edge barriers are significantly larger than terrace diffusion barriers. In addition, we analyze energetics for diffusion on the top flat surface of a nanofilm supported on a vicinal surface, and thus having underlying buried or ghost steps. We quantify the tilted potential energy surface in both ghost A- and B-step regions separating 2- and 3-ML (as well as 3- and 4-ML) terraces. Consequences are discussed for the growth kinetics of supported Pb nanofilms, where the support does not strongly affect electronic states within the film.
机译:已经广泛研究了PB(111)纳米丝,原型量子膜的各种性质。然而,对于Pb阶梯式PB(111)纳米丝表面的Pb Adatom扩散的关键AB初始能量屏障仍然不可用。利用第一原理密度函数理论,我们计算薄膜厚度少数单层(m1)的屏障。我们发现,两个原子交换总是比直接跳跃跨越A-或B型步骤更有利。 EHRLICH-SCHWOEBEL(ES)向下运输到更高协调的级位点的障碍在膜厚度上强烈取决于薄膜厚度。对于从2至1ml露台的运输,或从4-至3ml露台,没有ES屏障,但从3至2ml露台发现超过100mEV的大ES屏障。我们还获得沿着台阶边缘扩散的障碍,并发现这些级步屏障明显大于露天扩散屏障。此外,我们分析了在支撑在张开表面上的纳米丝的顶部平坦表面上的扩散的能量学,因此具有底层掩埋或鬼步骤。我们将倾斜的潜在能量表面量化在分离2-和3-mL(以及3毫升)露台的幽灵A和B阶段区域中。对于支持的PB Nanofilms的生长动力学讨论了后果,其中支持不会强烈影响电影中的电子国家。

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  • 来源
    《Physical review》 |2019年第19期|195405.1-195405.8|共8页
  • 作者单位

    Iowa State Univ Dept Phys & Astron Ames IA 50011 USA|Iowa State Univ US Dept Energy Ames Lab Ames IA 50011 USA;

    Iowa State Univ Dept Phys & Astron Ames IA 50011 USA|Iowa State Univ US Dept Energy Ames Lab Ames IA 50011 USA;

    Univ Utah Dept Mat Sci & Engn Salt Lake City UT 84112 USA;

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