Kondrat Grzegorz, Sznajd-Weron Katarzyna
Institute of Theoretical Physics, University of Wrocław, pl Maxa Borna 9, Wrocław, Poland.
Phys Rev E Stat Nonlin Soft Matter Phys. 2008 Feb;77(2 Pt 1):021127. doi: 10.1103/PhysRevE.77.021127. Epub 2008 Feb 27.
In this paper we propose a generalization of the one-dimensional outflow dynamics (KD). The rule is introduced as a simplification of Galam dynamics (GD) proposed in an earlier paper. We simulate three types of outflow dynamics, GD, Stauffer dynamics, and KD, both on the square and triangular lattices and show whether the outflow dynamics is sensitive to the lattice structure. Moreover, we took into account several types of initial configuration -- random, "stripes," and "circle." We investigate the dependence between the mean relaxation time and the initial density p of up-spins for each type of initial conditions, as well as dependence between the mean relaxation time and the size of the system. As a result, we show differences and similarities between three types of the outflow dynamics.
在本文中,我们提出了一维流出动力学(KD)的一种推广。该规则是作为早期论文中提出的加拉姆动力学(GD)的一种简化而引入的。我们在正方形和三角形晶格上模拟了三种类型的流出动力学,即GD、施陶费尔动力学和KD,并展示了流出动力学是否对晶格结构敏感。此外,我们考虑了几种类型的初始构型——随机的、“条纹”状的和“圆形”的。我们研究了每种初始条件下平均弛豫时间与上旋初始密度p之间的依赖关系,以及平均弛豫时间与系统大小之间的依赖关系。结果,我们展示了三种类型的流出动力学之间的差异和相似之处。