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Orientation-dependent surface and step energies of Pb from first principles

机译:Pb从第一原理到取向的表面能和阶跃能

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摘要

The orientation-dependent surface energies of 35 low-index and vicinal Pb surface orientations, located in the [001], [(1) over bar 10], and [01 (1) over bar] zones, have been calculated by density-functional theory within the local-density approximation. The highest surface energy anisotropies in these zones are at the (210), (110), and (311) directions. Surface relaxation decreases the surface energy anisotropy significantly. For misorientations smaller than 12 degrees the (projected) surface energy in a given zone increases linearly with step density, while curvature is found at higher misorientations, indicative of repulsive step-step interactions. These results are fully consistent with the orientation-dependent surface energy predicted by the statistical mechanics of the terrace-step-kink model of vicinal surfaces. The step formation energies and surface and step relaxation energies are derived and analyzed. There is good agreement with available experimental data. The calculated surface energies in eV/atom correlate linearly with the number of broken surface bonds. Deviations from perfect linearity are found to be essential for a proper description of the equilibrium crystal shape of Pb.
机译:通过密度-计算了位于[001],[(1)在条10上]和[01(1)在条上]区域中的35种低折射率和附近的Pb表面取向的取向相关表面能。局部密度近似下的泛函理论。这些区域中的最高表面能各向异性在(210),(110)和(311)方向上。表面弛豫显着降低了表面能各向异性。对于小于12度的取向错误,给定区域中的(投影)表面能随步长密度线性增加,而在更高的取向错误处发现曲率,表明排斥性的步步相互作用。这些结果与邻近表面的梯阶扭结模型的统计力学所预测的与取向相关的表面能完全一致。推导并分析了台阶形成能以及表面和台阶松弛能。与可用的实验数据有很好的一致性。在eV /原子中计算出的表面能与表面键断裂的数量线性相关。发现对于理想的铅平衡晶体形状的描述,与理想线性的偏差是必不可少的。

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