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Anharmonic Effects On B2-feal(1 1 0) Surface: A Molecular Dynamics Study

机译:B2-feal(1 1 0)表面上的非谐效应:分子动力学研究

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Using molecular dynamics simulations and the analytic embedded-atom method (AEAM), the surface anharmonicity of B2-FeAl(1 1 0) has been studied in the temperature range from 0 K to 1400 K. The temperature dependence of the interlayer spacing, mean square vibrational amplitudes, surface phonon frequencies and line-widths, and layer structure factor have been calculated. The obtained results indicate that the anharmonic effects are small in the temperature range from 0 K to 900 K. The temperature dependences of the interlayer spacing indicates that the rippling effect of the B2-FeAl(1 1 0) surface is exhibited by the contraction of Fe surface atoms and the expansion of Al atoms, which persists at high temperatures. The temperature dependence of the layer structure factors shows that the B2-FeAl(1 1 0) surface does not disorder until the temperature of 1300 K.
机译:使用分子动力学模拟和解析嵌入原子方法(AEAM),研究了B2-FeAl(1 1 0)在0 K至1400 K的温度范围内的表面非谐性。计算出方波振幅,表面声子频率和线宽以及层结构因子。获得的结果表明,在0 K至900 K的温度范围内,非谐效应很小。层间间距的温度依赖性表明B2-FeAl(1 1 0)表面的波纹效应是由B2-FeAl的收缩引起的。 Fe表面原子和Al原子的膨胀在高温下持续存在。层结构因子的温度依赖性表明,直到1300 K的温度,B2-FeAl(1 1 0)的表面才会无序。

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