Kwon S, Hwang W, Park H
Department of Physics, Inha University, Inchon 402-751, Korea.
Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics. 1999 May;59(5 Pt A):4949-52. doi: 10.1103/physreve.59.4949.
We study the dynamics of an interface (active domain) between different absorbing regions in models with two absorbing states in one dimension: probabilistic cellular automata models and interacting monomer-dimer models. These models exhibit a continuous transition from an active phase into an absorbing phase, which belongs to the directed Ising (DI) universality class. In the active phase, the interface spreads ballistically into the absorbing regions and the interface width diverges linearly in time. Approaching the critical point, the spreading velocity of the interface vanishes algebraically with a DI critical exponent. Introducing a symmetry-breaking field h that prefers one absorbing state over the other drives the interface to move asymmetrically toward the unpreferred absorbing region. In Monte Carlo simulations, we find that the spreading velocity of this driven interface shows a discontinuous jump at criticality. We explain that this unusual behavior is due to a finite relaxation time in the absorbing phase. The crossover behavior from the symmetric case (DI class) to the asymmetric case (directed percolation class) is also studied. We find the scaling dimension of the symmetry-breaking field y(h)=1.21(5).
我们研究了一维具有两个吸收态的模型中不同吸收区域之间界面(活性区域)的动力学:概率细胞自动机模型和相互作用的单体 - 二聚体模型。这些模型呈现出从活性相到吸收相的连续转变,该吸收相属于定向伊辛(DI)普适类。在活性相中,界面以弹道方式扩散到吸收区域,并且界面宽度随时间线性发散。接近临界点时,界面的扩散速度以DI临界指数代数方式消失。引入一个打破对称性的场h,该场更倾向于一个吸收态而非另一个,会驱使界面朝着非偏好的吸收区域不对称移动。在蒙特卡罗模拟中,我们发现这个驱动界面的扩散速度在临界处显示出不连续的跳跃。我们解释这种不寻常行为是由于吸收相中的有限弛豫时间。还研究了从对称情况(DI类)到不对称情况(定向渗流类)的交叉行为。我们发现打破对称性的场的标度维数y(h)=1.21(5)。