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随机晶格Lotka-Volterra模型中的非平衡弛豫

Non-equilibrium relaxation in a stochastic lattice Lotka-Volterra model.

作者信息

Chen Sheng, Täuber Uwe C

机构信息

Department of Physics (MC 0435), Center for Soft Matter and Biological Physics, Robeson Hall, 850 West Campus Drive, Virginia Tech, Blacksburg, VA 24061, USA.

出版信息

Phys Biol. 2016 Apr 19;13(2):025005. doi: 10.1088/1478-3975/13/2/025005.

Abstract

We employ Monte Carlo simulations to study a stochastic Lotka-Volterra model on a two-dimensional square lattice with periodic boundary conditions. If the (local) prey carrying capacity is finite, there exists an extinction threshold for the predator population that separates a stable active two-species coexistence phase from an inactive state wherein only prey survive. Holding all other rates fixed, we investigate the non-equilibrium relaxation of the predator density in the vicinity of the critical predation rate. As expected, we observe critical slowing-down, i.e., a power law dependence of the relaxation time on the predation rate, and algebraic decay of the predator density at the extinction critical point. The numerically determined critical exponents are in accord with the established values of the directed percolation universality class. Following a sudden predation rate change to its critical value, one finds critical aging for the predator density autocorrelation function that is also governed by universal scaling exponents. This aging scaling signature of the active-to-absorbing state phase transition emerges at significantly earlier times than the stationary critical power laws, and could thus serve as an advanced indicator of the (predator) population's proximity to its extinction threshold.

摘要

我们采用蒙特卡罗模拟方法,研究了具有周期性边界条件的二维方形晶格上的随机洛特卡 - 沃尔泰拉模型。如果(局部)猎物承载能力是有限的,那么对于捕食者种群存在一个灭绝阈值,该阈值将稳定的活跃两物种共存阶段与仅猎物存活的非活跃状态区分开来。在保持所有其他速率不变的情况下,我们研究了临界捕食率附近捕食者密度的非平衡弛豫。正如预期的那样,我们观察到临界慢化,即弛豫时间对捕食率的幂律依赖,以及在灭绝临界点处捕食者密度的代数衰减。数值确定的临界指数与定向渗流普适类的既定值一致。在捕食率突然变为其临界值之后,人们发现捕食者密度自相关函数存在临界老化,其也由通用标度指数控制。这种从活跃状态到吸收状态的相变的老化标度特征出现在比平稳临界幂律早得多的时间,因此可以作为(捕食者)种群接近其灭绝阈值的一个提前指标。

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