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Atomic mechanism of glass-to-liquid transition in simple monatomic glasses

机译:简单单原子玻璃中玻璃到液体转变的原子机理

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The atomic mechanism of a glass-to-liquid transition in a monatomic Lennard-Jones (LJ) glass was studied using the molecular dynamics (MD) method. Glassy models were heated up from low temperature at two different heating rates and a glass-to-liquid transition found to occur at the higher heating rate. The temperature dependence of the potential energy, mean-squared-displacements (MSD) of the atoms and the self-intermediate scattering function indicate clearly that a glass transition occurs in the system. The atomic mechanism of the glass-to-liquid transition was investigated by analyzing the spatio-temporal arrangement of liquid-like atoms in the system upon heating. Liquid-like atoms were detected using the Lindemann-melting-like criterion. Upon heating, liquid-like atoms occur at temperatures far below the glass transition temperature ( ) due to local instabilities. Their number increases upon further heating and they form clusters. Subsequently, a single percolation cluster of liquid-like atoms appears, which spans the system at . The percentage of liquid-like atoms aggregated into this single percolation cluster reaches more than 83% at the melting point ( ) to form a liquid phase. These results show previously unreported aspects of the glass-to-liquid transition and share some trends observed for homogeneous melting of crystalline solids without a free surface.
机译:使用分子动力学(MD)方法研究了单原子Lennard-Jones(LJ)玻璃中玻璃到液体转变的原子机理。玻璃状模型以两种不同的加热速率从低温加热,并且发现以较高的加热速率会发生玻璃-液体转变。势能的温度依赖性,原子的均方位移(MSD)和自中间散射函数清楚地表明,系统中发生了玻璃化转变。通过分析加热后体系中液状原子的时空排列,研究了玻璃向液体转变的原子机理。使用林德曼-熔化样标准检测液体样原子。加热后,由于局部不稳定性,类液体原子出现在远低于玻璃化转变温度()的温度下。它们的数量随着进一步加热而增加,并形成簇。随后,出现了一个单个的类液体原子的渗流簇,该簇遍布于的系统。聚集到该单个渗滤簇中的类液体原子的百分比在熔点()达到83%以上,形成液相。这些结果显示了以前从未报道过的玻璃到液体转变的方面,并且分享了在没有自由表面的情况下均匀结晶固体的观察到的一些趋势。

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  • 来源
    《Philosophical Magazine》 |2011年第26期|p.3443-3455|共13页
  • 作者

    Vo Van Hoanga*;

  • 作者单位

    a Department of Physics, Institute of Technology, National University of HochiMinh City, 268 Ly Thuong Kiet Street, District 10, HochiMinh City, Vietnam;

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