Nelissen K, Partoens B, Peeters F M
Departement Fysica, Universiteit Antwerpen, Groenenborgerlaan 171, B-2020 Antwerpen, Belgium.
Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Sep;84(3 Pt 1):031405. doi: 10.1103/PhysRevE.84.031405. Epub 2011 Sep 19.
The influence of an ellipsoid on the angular order of two-dimensional classical clusters is investigated through Brownian dynamics simulations. We found the following: (1) The presence of an ellipsoid does not influence the start of the angular melting, but reduces the rate at which the inner rings can rotate with respect to each other. (2) Even a small eccentricity of the ellipsoid leads to a stabilization of the angular order of the system. (3) Depending on the position of the ellipsoid in the cluster, a reentrant behavior in the angular order is observed before full radial melting of the cluster sets in. (4) The ellipsoid can lead to a two-step angular melting process: First, the rotation of the inner rings with respect to each other is hindered by the ellipsoid, but on further increasing the kinetic energy of the system, the ellipsoid just starts to behave as a spherical particle with different mobility. The effect of an ellipsoid on the molten system does not depend crucially on the interparticle interaction, but a softer parabolic confinement reduces the angular stabilization.
通过布朗动力学模拟研究了椭球体对二维经典团簇角序的影响。我们发现以下几点:(1) 椭球体的存在不影响角熔化的起始,但会降低内环相对彼此旋转的速率。(2) 即使椭球体的偏心率很小也会导致系统角序的稳定。(3) 根据椭球体在团簇中的位置,在团簇完全径向熔化之前会观察到角序的折返行为。(4) 椭球体可导致两步角熔化过程:首先,内环相对彼此的旋转受到椭球体的阻碍,但在进一步增加系统动能时,椭球体开始表现为具有不同迁移率的球形粒子。椭球体对熔融系统的影响并不关键取决于粒子间相互作用,但较软的抛物线限制会降低角稳定性。