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超越定向渗流的主动吸收态相变:一类精确可解模型。

Active-absorbing-state phase transition beyond directed percolation: a class of exactly solvable models.

作者信息

Basu Urna, Mohanty P K

机构信息

Theoretical Condensed Matter Physics Division, Saha Institute of Nuclear Physics, 1/AF Bidhan Nagar, Kolkata 700064, India.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Apr;79(4 Pt 1):041143. doi: 10.1103/PhysRevE.79.041143. Epub 2009 Apr 27.

Abstract

We introduce and solve a model of hardcore particles on a one-dimensional periodic lattice which undergoes an active-absorbing-state phase transition at finite density. In this model, an occupied site is defined to be active if its left neighbor is occupied and the right neighbor is vacant. Particles from such active sites hop stochastically to their right. We show that both the density of active sites and the survival probability vanish as the particle density is decreased below half. The critical exponents and spatial correlations of the model are calculated exactly using the matrix product ansatz. Exact analytical study of several variations of the model reveals that these nonequilibrium phase transitions belong to a new universality class different from the generic active-absorbing-state phase transition, namely, directed percolation.

摘要

我们引入并求解了一个一维周期晶格上硬核粒子的模型,该模型在有限密度下经历了一个活性吸收态相变。在这个模型中,如果一个被占据的格点的左邻格点被占据且右邻格点为空,则该格点被定义为活性的。来自这些活性格点的粒子随机向右跳跃。我们表明,当粒子密度降低到一半以下时,活性格点的密度和存活概率都消失了。使用矩阵乘积假设精确计算了该模型的临界指数和空间相关性。对该模型的几种变体进行的精确解析研究表明,这些非平衡相变属于一个不同于一般活性吸收态相变的新普适类,即定向渗流。

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