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首页> 外文期刊>Physical review, E >Maximum entropy approach to H-theory: Statistical mechanics of hierarchical systems
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Maximum entropy approach to H-theory: Statistical mechanics of hierarchical systems

机译:H-理论的最大熵方法:等级系统的统计力学

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摘要

A formalism, called H-theory, is applied to the problem of statistical equilibrium of a hierarchical complex system with multiple time and length scales. In this approach, the system is formally treated as being composed of a small subsystem-representing the region where the measurements are made-in contact with a set of "nested heat reservoirs" corresponding to the hierarchical structure of the system, where the temperatures of the reservoirs are allowed to fluctuate owing to the complex interactions between degrees of freedom at different scales. The probability distribution function (pdf) of the temperature of the reservoir at a given scale, conditioned on the temperature of the reservoir at the next largest scale in the hierarchy, is determined from a maximum entropy principle subject to appropriate constraints that describe the thermal equilibrium properties of the system. The marginal temperature distribution of the innermost reservoir is obtained by integrating over the conditional distributions of all larger scales, and the resulting pdf is written in analytical form in terms of certain special transcendental functions, known as the Fox H functions. The distribution of states of the small subsystem is then computed by averaging the quasiequilibrium Boltzmann distribution over the temperature of the innermost reservoir. This distribution can also be written in terms ofH functions. The general family of distributions reported here recovers, as particular cases, the stationary distributions recently obtained by Macêdo et al. [Phys. Rev. E 95, 032315 (2017)] from a stochastic dynamical approach to the problem.
机译:一种名为H-理论的形式主义应用于多次和长度尺度的分层复杂系统的统计平衡问题。在这种方法中,系统正式地被视为由小子系统代表的区域组成,其中由对应于系统的分层结构的一组“嵌套热储存器”与一组“嵌套热储存器”接触。由于不同尺度的自由度之间的复杂相互作用,储存器被允许波动。在层次结构中的下一个最大尺度下,在给定尺度下储存的温度的概率分布函数(PDF)由在层次结构中的下一个大规模的下一个规模中确定,从而确定了描述热平衡的适当约束的最大熵原理系统的属性。通过整合所有较大尺度的条件分布来获得最内储层的边缘温度分布,并且在某些特殊的超越函数方面以分析形式写入所得的PDF,称为Fox H功能。然后通过在最内储液体的温度上平均QuasiequibiRibrium Boltzmann分布来计算小子系统的状态的分布。该分布也可以以OF函数编写。据报道,此处报告的一般分布系列恢复了最近通过Macêdo等人获得的静止分布。 [物理。 Rev. E 95,032315(2017)]从随机动态方法到问题。

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