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首页> 外文期刊>Physica, D. Nonlinear phenomena >A non-equilibrium Monte Carlo renormalization-group approach based upon the microscopic master equation applied to the three-state driven lattice gas
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A non-equilibrium Monte Carlo renormalization-group approach based upon the microscopic master equation applied to the three-state driven lattice gas

机译:基于微观主方程的非平衡蒙特卡洛重归一化组方法应用于三态驱动晶格气

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摘要

We present a general position-space renormalization-group approach for systems in steady states far from equilibrium and illustrate its application to the three-state driven lattice gas. The method is based upon the possibility of a closed form representation of the parameters controlling transition rates of the system in terms of the steady state probability distribution of small clusters, arising from the application of the master equations to small clusters. This probability distribution on various length scales is obtained through a Monte Carlo algorithm on small lattices, which then yields a mapping between parameters on different length scales. The renormalization-group flows indicate the phase diagram, analogous to equilibrium treatments. For the three-state driven lattice gas, we have implemented this procedure and compared the resulting phase diagrams with those obtained directly from simulations. Results in general show the expected topology with one exception. For high densities, an unexpected additional fixed point emerges, which can be understood qualitatively by comparing it with the fixed point of the fully asymmetric exclusion process. (c) 2005 Elsevier B.V. All rights reserved.
机译:我们提出了一种远离稳态的稳态系统的一般位置空间重归一化组方法,并说明了其在三态驱动晶格气中的应用。该方法基于以小簇的稳态概率分布来表示控制系统转换速率的参数的封闭形式表示的可能性,这是由于将主方程应用于小簇而引起的。通过蒙特卡罗算法在小格子上获得各种长度尺度上的概率分布,然后在不同长度尺度上的参数之间产生映射。重整化组流指示相图,类似于平衡处理。对于三态驱动的晶格气,我们已经执行了此过程,并将得到的相图与直接从仿真获得的相图进行了比较。结果总体上显示了预期的拓扑,只有一个例外。对于高密度,出现了意外的附加固定点,可以通过将其与完全不对称排除过程的固定点进行比较来定性地理解。 (c)2005 Elsevier B.V.保留所有权利。

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