论文标题
远程排斥杆状磁性颗粒的反线性顺序在2D中
Anticlinic order of long-range repulsive rod-like magnetic particles in 2D
论文作者
论文摘要
在液晶领域,众所周知,通过远距离相互作用或短距离排斥电位相互作用的棒状分子可以表现出定向阶。在这项工作中,我们对通过远程排斥潜力相互作用的棒状粒子系统会发生什么。在我们的模型中,每个粒子由沿粒子长度均匀分布的许多点偶极子组成,所有偶极子都沿$ z-$轴指向,因此当杆状粒子坐落在$ x-y $平面上时,它们彼此排斥。来自不同粒子的偶极子通过$ r^{ - 3} $潜力相互作用,其中$ r $是偶极子之间的距离。我们已经考虑了两个模型系统,每个系统都在具有周期性边界条件的单位单元格中具有$ N $颗粒。首先,粒子中心固定在正方形或三角形晶格上,但可以自由旋转。在第二个中,颗粒可以自由翻译,并且在具有可变形状的细胞中。在这里,他们会自组装以形成应力张量是各向同性的配置。我们的数值结果表明,在低温下,颗粒倾向于以交替的方向形成条纹,类似于人字形图案或反对的SM-C $ _ {a} $液晶相。
In the field of liquid crystals, it is well-known that rod-like molecules interacting via long-range attractive interactions or short-range repulsive potentials can exhibit orientational order. In this work, we are interested in what would happen to systems of rod-like particles interacting via long-range repulsive potential. In our model, each particle consists of a number of point dipoles uniformly distributed along the particle length, with all dipoles pointing along the $z-$ axis, so that the rod-like particles repel each other when they lie in the $x-y$ plane. Dipoles from different particles interact via an $r^{-3}$potential, where $r$ is the distance between the dipoles. We have considered two model systems, each with $N$ particles in a unit cell with periodic boundary conditions. In the first, particle centers are fixed on a square or triangular lattice but they are free to rotate. In the second, particles are free to translate as well as in cells with variable shapes. Here they self-assemble to form configurations where the stress tensors are isotropic. Our numerical results show that at low temperatures the particles tend to form stripes with alternating orientations, resembling herringbone patterns or the anticlinic Sm-C$_{A}$ liquid crystal phase.