论文标题

在强耦合培养基中通过静电相互作用形成结构

Structure formation by electrostatic interactions in strongly coupled medium

论文作者

Yadav, Mamta, Deshwal, Priya, Maity, Srimanta, Das, Amita

论文摘要

相关结构的形成在许多不同的背景下至关重要,例如强烈的等离子体,软物质甚至生物学培养基。在所有这些情况下,动力学主要受静电相互作用的控制,并导致形成多种结构。在这项研究中,在2和3维度的分子(MD)模拟的帮助下研究了结构的形成过程。总体培养基已通过远程对库仑电位相互作用的正聚和负电荷的颗粒进行建模。增加了排斥的短期Lennard-Jones(LJ)电位,以照顾与电荷之间的有吸引力的库仑相互作用的爆炸。在强烈耦合的制度中,各种经典结合状态形式。但是,通常不会发生在一个组件强烈耦合等离子体的情况下观察到的系统的完全结晶。还研究了系统中局部扰动的影响。观察到屏蔽云的结晶模式在这种干扰周围的形成。已经使用径向分布函数和伏诺图图分析了屏蔽结构的空间特性。在干扰周围围绕的相对电荷颗粒积累的过程触发了大部分培养基中的许多动态活性,其中发生了广泛分离的粒子之间的紧密相遇。这导致形成了大量较大的群集。但是,在某些情况下,绑定对分解以向屏蔽云提供适当的签名电荷。手稿中提供了对这些功能的详细讨论。

The formation of correlated structures is of importance in many diverse contexts such as strongly coupled plasmas, soft matter, and even biological mediums. In all these contexts the dynamics are mainly governed by electrostatic interactions and result in the formation of a variety of structures. In this study, the process of formation of structures is investigated with the help of Molecular (MD) simulations in 2 and 3 dimensions. The overall medium has been modelled with an equal number of positive and negatively charged particles interacting via long-range pair Coulomb potential. A repulsive short-range Lennard-Jones (LJ) potential is added to take care of the blowing up of attractive Coulomb interaction between unlike charges. In the strongly coupled regime, a variety of classical bound states form. However, complete crystallization of the system, as typically observed in the context of one component strongly coupled plasmas, does not occur. The influence of localized perturbation in the system has also been studied. The formation of a crystalline pattern of shielding clouds around this disturbance is observed. The spatial properties of the shielding structure have been analyzed using the radial distribution function and Voronoi diagram. The process of accumulation of oppositely charged particles around the disturbance triggers a lot of dynamical activity in the bulk of the medium, wherein close encounters between widely separated particles occur. This leads to the formation of a larger number of bigger clusters. There are, however, also instances when bound pairs break up to provide the appropriate signed charge to the shielding cloud. A detailed discussion of these features has been provided in the manuscript.

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