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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Physical mechanisms in impacts of interaction factors on totally asymmetric simple exclusion processes
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Physical mechanisms in impacts of interaction factors on totally asymmetric simple exclusion processes

机译:相互作用因子对完全不对称简单排除过程的影响的物理机制

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摘要

Exclusion processes are hot study issues in statistical physics and corresponding complex systems. Among fruitful exclusion processes, totally asymmetric simple exclusion process (namely, TASEP) attracts much attention due to its insight physical mechanisms in understanding such nonequilibrium dynamical processes. However, interactions among isolated TASEP are the core of controlling the dynamics of multiple TASEPs that are composed of a certain amount of isolated one-dimensional TASEP. Different from previous researches, the interaction factor is focused on the critical characteristic parameter used to depict the interaction intensity of these components of TASEPs. In this paper, a much weaker constraint condition Pi(K)(i=1) omega(d)(i) = Pi(K)(i=1) omega(u)(i) is derived as the analytical expression of interaction factor. Self-propelled particles in the subsystem i of multiple TASEPs can perform hopping forward at p(i), moving into the target site of the (i - 1)th TASEP channel at omega(u)(i) or updating into the (i + 1)th TASEP channel at omega(d)(i). The comparison of this proposed interaction factor and other previous factors is performed by investigating the computational efficiency of obtaining analytical solutions and simulation ones of order parameters of the proposed TASEP system. Obtained exact solutions are observed to match well with Monte Carlo simulations. This research attempts to have a more comprehensive interpretation of physical mechanisms in the impact of interaction factors on TASEPs, especially corresponding to stochastic dynamics of self-propelled particles in such complex statistical dynamical systems.
机译:排除过程是统计物理和相应复杂系统中的热门研究问题。在富有成效的排除过程中,完全不对称的简单排除过程(即TASEP)由于其洞察力的物理机制而在理解这种非QuiBiBriaM动态过程中引起了很多关注。然而,孤立的TASEP之间的交互是控制由多个分段的动态的核心,这些TASEPS由一定数量的隔离的一维TASEP组成。与以前的研究不同,相互作用因子专注于用于描绘TASEPS的这些组分的相互作用强度的关键特征参数。在本文中,越弱的约束条件Pi(k)(I = 1)ω(I)(I)= Pi(k)(I = 1)ω(u)(i)被推导为相互作用的分析表达因素。多个TASEP的子系统I中的自推进粒子可以在P(i)中进行跳跃,进入Omega(U)(i)(i)的(i)(i)的目标站点或更新(i + 1)Omega(D)(i)的TASEP通道。通过研究获得所提出的TASEP系统的订单参数的分析解决方案和仿真参数来执行该拟议的相互作用因子和其他先前因素的比较。观察到获得的精确解决方案与蒙特卡罗模拟相匹配。该研究试图在促进型统计动态系统中对相互作用因子的影响,特别是对应于自推进颗粒的随机动力学的影响更全面的解释。

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