Diagnosis of solid–liquid phase transition using hopping particles in 2D dusty plasmas

Shaoyu Lu, Dong Huang, Zhuang Ma, Yan Feng
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Abstract

Based on the statistical analysis of particles hopping outside the cages formed by their nearest neighboring particles, a new diagnostic of the hopping particle (HP) percentage is proposed to identify the solid–liquid phase transition in two-dimensional (2D) dusty plasmas. To demonstrate the effectiveness of the HP percentage, Langevin dynamical simulations of 2D Yukawa systems under various conditions are performed to mimic 2D dusty plasmas. It is found that the HP percentage exhibits a significant jump while decreasing the coupling parameter around the melting point, just corresponding to the solid–liquid phase transition. As compared with other traditionally used diagnostics, the HP percentage diagnostic is sensitive enough, and the dynamical information is incorporated inside. By comparing to the most widely used diagnostic of the bond-angular order parameter, the melting criterion of this HP percentage diagnostic is determined to be about 30% for the suitable time interval, which is general for the 2D Yukawa systems with different screening parameters.
利用二维尘埃等离子体中的跳跃粒子诊断固液相变
基于对跳出其最近相邻粒子形成的笼子的粒子的统计分析,提出了一种新的诊断方法--跳粒子(HP)百分比,用于识别二维(2D)尘埃等离子体中的固液相变。为了证明跳跃粒子百分比的有效性,我们在不同条件下对二维汤川系统进行了朗格文动力学模拟,以模拟二维含尘等离子体。结果发现,在降低熔点附近的耦合参数时,HP 百分比会出现显著的跃迁,而熔点正好对应于固液相变。与其他传统诊断方法相比,HP 百分比诊断方法具有足够的灵敏度,而且其中包含了动力学信息。通过与最广泛使用的键角阶次参数诊断法比较,该 HP 百分比诊断法的熔化标准被确定为在合适的时间间隔内约为 30%,这对于具有不同筛选参数的二维汤川系统是通用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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