Almudallal Ahmad M, Saika-Voivod Ivan
Department of Physics and Physical Oceanography, Memorial University of Newfoundland, St John's, Newfoundland, Canada A1B 3X7.
Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Jul;84(1 Pt 1):011402. doi: 10.1103/PhysRevE.84.011402. Epub 2011 Jul 25.
We perform Monte Carlo simulations of a simplified two-dimensional model for colloidal hard spheres in an external uniaxial ac electric field. Experimentally, the external field induces dipole moments in the colloidal particles, which in turn form chains. We therefore approximate the system as composed of well-formed chains of dipolar hard spheres of a uniform length. The dipolar interaction between colloidal spheres gives rise to an effective interaction between the chains, which we treat as disks in a plane, that includes a short-range attraction and long-range repulsion. Hence, the system favors finite clustering over bulk phase separation, and indeed we observe at low temperature and density that the system does form a cluster phase. As the density increases, percolation is accompanied by a pressure anomaly. The percolated phase, despite being composed of connected, locally crystalline domains, does not bear the typical signatures of a hexatic phase. At very low densities, we find no indication of a "void phase" with a cellular structure seen recently in experiments.
我们对处于外部单轴交流电场中的胶体硬球简化二维模型进行了蒙特卡罗模拟。在实验中,外部电场会在胶体粒子中诱导出偶极矩,进而形成链状结构。因此,我们将该系统近似为由长度均匀的偶极硬球形成的规则链组成。胶体球之间的偶极相互作用会在链之间产生有效相互作用,我们将链视为平面中的圆盘,这种相互作用包括短程吸引和长程排斥。因此,该系统更倾向于有限聚集而非体相分离,实际上我们观察到在低温和低密度下系统确实形成了聚集相。随着密度增加,渗流伴随着压力异常。尽管渗流相由相连的局部晶域组成,但并不具有六次近晶相的典型特征。在非常低的密度下,我们没有发现实验中最近观察到的具有蜂窝状结构的“空相”迹象。