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Molecular-dynamics simulations of nucleation and crystallization in supercooled liquid silicon: Temperature-gradient effects

机译:过冷液态硅中成核和结晶的分子动力学模拟:温度梯度效应

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We have investigated atomistic processes of nucleation and crystallization in supercooled liquid silicon (Si) based on molecular-dynamics (MD) simulations using the Tersoff potential. MD cells composed of up to 8192 Si atoms were heated to produce melted Si, and then melted Si was quenched under various supercooled conditions with or without a temperature gradient and the corresponding nucleation processes were visualized. The critical nucleation radius was determined as a function of the amount of supercooling ΔT and it was found to be inversely proportional to ΔT. It was also found, in the case of supercooling under a linear temperature gradient, that nucleation first occurred at the lower-temperature region and then crystallization proceeded toward the high-temperature region with the (111) surface mostly parallel to the temperature gradient.
机译:我们已经基于使用Tersoff势的分子动力学(MD)模拟研究了过冷液态硅(Si)中成核和结晶的原子过程。加热由最多8192个Si原子组成的MD单元,以生产熔融的Si,然后在各种过冷条件下,在有或没有温度梯度的情况下,将熔融的Si淬灭,并观察相应的成核过程。确定临界成核半径为过冷量ΔT的函数,并且发现其与ΔT成反比。还发现,在线性温度梯度下过冷的情况下,成核首先发生在较低温度区域,然后结晶朝着高温区域进行,其(111)表面基本上平行于温度梯度。

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