Moucka Filip, Nezbeda Ivo
Department of Physics, JE Purkyne University, 400 96 Ustí nad Labem, Czech Republic.
Phys Rev Lett. 2005 Feb 4;94(4):040601. doi: 10.1103/PhysRevLett.94.040601.
The fluid of two-dimensional hard disks is investigated over a range of densities by Monte Carlo simulations in order to detect and characterize structural changes which take place when the condition of freezing and melting is approached. A novel method is proposed based on the use of the Voronoi tessellation and a certain shape factor which turns out to be a clear indicator of the presence of different underlying substructures (domains). Close to the freezing condition the probability distribution of the shape factor develops a second distinct maximum corresponding to a predominant presence of near-regular hexagons, whereas the original peak, having its origin primarily in pentagons and distorted hexagons, diminishes and disappears at melting density.
通过蒙特卡罗模拟在一系列密度范围内研究二维硬磁盘流体,以检测和表征接近冻结和熔化条件时发生的结构变化。基于Voronoi镶嵌和某个形状因子提出了一种新方法,该形状因子被证明是不同潜在子结构(区域)存在的明确指标。接近冻结条件时,形状因子的概率分布会出现第二个明显的最大值,对应于近乎规则六边形的主要存在,而最初主要源于五边形和扭曲六边形的峰值在熔化密度时会减小并消失。