二维同心圆层中分子动力学与矩量法的比较分析。

IF 2.3 4区 物理与天体物理 Q3 PHYSICS, CONDENSED MATTER Journal of Physics: Condensed Matter Pub Date : 2024-07-04 DOI:10.1088/1361-648X/ad5baf
Robert Salazar, Cristian Cobos, Diego Jaramillo, Camilo Bayona-Roa
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引用次数: 0

摘要

在本手稿中,我们对部署在两个有限共平面上的经典等离子体进行了研究:一个圆形区域$\Omega_{in}$和一个环形区域$\Omega_{out}$,中间有一个间隙。我们从统计力学和连续介质静电学的角度对其进行了研究。我们采用了双重视角:第一种视角是使用分子动力学(MD)模拟来寻找系统的位置相关函数和速度分布。这是把系统建模为一个经典的二维库仑等离子体,由分别位于$\Omega_{in}$和$\Omega_{out}$层上的点状带电粒子$q_1$和$q_2$组成,没有背景密度。第二种情况对应于一个有限的表面电极,它由平面金属层组成,显示在恒定电压 $V_{in}$ 和 $V_{out}$ 下的 $\Omega_{in}$、$\Omega_{out}$ 区域,考虑到轴对称性。表面电荷密度是通过静电近似下的矩量法 (MoM) 计算得出的。在这两种情况下,点状电荷和微分电荷元素都是通过 $1/r$ - 电势相互作用的。一旦层的几何形状固定,等离子体引起的数密度和电动势的热力学平均值取决于耦合和电荷比 $\xi=q_1/q_2$。另一方面,表面电极(SE)产生的场取决于层的几何形状及其电压。在本文中,我们定义了一个协议来正确比较这两个系统。我们表明,在某些耦合参数值下,通过 MD 计算出的热力学平均值与 MoM 对吸引力层 $\xi=-1$ 和排斥力层 $\xi=1$ 的计算结果一致。
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Comparative analysis of molecular dynamics and method of moments in two-dimensional concentric circular layers.

In this manuscript, we undertake an examination of a classical plasma deployed on two finite co-planar surfaces: a circular regionΩininto an annular regionΩoutwith a gap in between. It is studied both from the point of view of statistical mechanics and the electrostatics of continua media. We employ a dual perspective: the first one is by using molecular dynamics (MD) simulations to find the system's positional correlation functions and velocity distributions. That by modeling the system as a classical two-dimensional Coulomb plasma of point-like charged particlesq1andq2on the layersΩinandΩoutrespectively with no background density. The second one corresponds to a finite Surface Electrode (SE) composed of planar metallic layers displayed on the regionsΩin,Ωoutat constant voltagesVin,Voutconsidering axial symmetry. The surface charge density is calculated by the Method of Moments (MoM) under the electrostatic approximation. Point-like and differential charges elements interact via a1/r-electric potential in both cases. The thermodynamic averages of the number density, and electric potential due to the plasma depend on the coupling and the charge ratioξ=q1/q2once the geometry of the layers is fixed. On the other hand, the fields due to the SE depend on the layer's geometry and their voltage. In the document, is defined a protocol to properly compare the systems. We show that there are values of the coupling parameter, where the thermodynamic averages computed via MD agree with the results of MoM for attractiveξ=-1and repulsive layersξ = 1.

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来源期刊
Journal of Physics: Condensed Matter
Journal of Physics: Condensed Matter 物理-物理:凝聚态物理
CiteScore
5.30
自引率
7.40%
发文量
1288
审稿时长
2.1 months
期刊介绍: Journal of Physics: Condensed Matter covers the whole of condensed matter physics including soft condensed matter and nanostructures. Papers may report experimental, theoretical and simulation studies. Note that papers must contain fundamental condensed matter science: papers reporting methods of materials preparation or properties of materials without novel condensed matter content will not be accepted.
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