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An embedded atom method potential of beryllium

机译:铍的嵌入原子法势

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We present an embedded atom method (EAM) potential for hexagonal beryllium, with a pair function in the form of a Morse potential and a Johnson embedding function with exponential electron density. The cohesive energy, elastic constants, lattice parameters and relaxed vacancy formation energy were used to fit the potential. The fitted-potential was validated by a comparison to first-principles and, wherever available, experimental results for the lattice energies of various crystal structures: vacancy cluster, interstitial formation and surface. Using a large cutoff distance of 5?, which includes interactions to approximately the eighth neighbor shell of beryllium, allows our potential to reproduce these quantities considerably better than previous EAM potentials. The accuracy obtained by our potential is similar to or in some cases even better than available modified EAM potentials, while being computationally less intensive.
机译:我们提出了六角形铍的嵌入原子方法(EAM)势,具有摩尔斯势和具有指数电子密度的Johnson嵌入函数形式的成对函数。内聚能,弹性常数,晶格参数和松弛的空位形成能被用来拟合电势。通过与第一性原理进行比较,并在可能的情况下,通过对各种晶体结构(空位簇,间隙形成和表面)的晶格能的实验结果,验证了拟合势。使用5?的大截止距离(包括与铍的第八个相邻壳的相互作用)使我们的潜力比以前的EAM潜力更好地复制了这些数量。通过我们的电势获得的精度与可用的修改后的EAM电势相似或在某些情况下甚至更高,但计算强度较低。

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