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吉布斯系综中的场论模拟。

Field-theoretic simulations in the Gibbs ensemble.

机构信息

Department of Chemical Engineering, University of California, Santa Barbara, California 93106, USA.

出版信息

J Chem Phys. 2010 Jan 14;132(2):024104. doi: 10.1063/1.3292004.

Abstract

Calculating phase diagrams and measuring the properties of multiple phases in equilibrium is one of the most common applications of field-theoretic simulations. Such a simulation often attempts to simulate two phases in equilibrium with each other in the same simulation box. This is a computationally demanding approach because it is necessary to perform a large enough simulation so that the interface between the two phases does not affect the estimate of the bulk properties of the phases of interest. In this paper, we describe an efficient method for performing field-theoretic simulations in the Gibbs ensemble, a familiar construct in particle-based simulations where two phases in equilibrium with each other are simulated in separate simulation boxes. Chemical and mechanical equilibrium is maintained by allowing the simulation boxes to swap both chemical species and volume. By fixing the total number of each chemical species and the total volume, the Gibbs ensemble allows for the efficient simulation of two bulk phases at equilibrium in the canonical ensemble. After providing the theoretical framework for field-theoretic simulations in the Gibbs ensemble, we demonstrate the method on two two-dimensional model polymer test systems in both the mean-field limit (self-consistent field theory) and in the fluctuating field theory.

摘要

计算相图并测量平衡多相的性质是场论模拟最常见的应用之一。这种模拟通常试图在同一个模拟盒中模拟相互平衡的两相。这是一种计算要求很高的方法,因为需要进行足够大的模拟,以使两相之间的界面不会影响感兴趣相的体相性质的估计。在本文中,我们描述了一种在吉布斯系综中进行场论模拟的有效方法,这是基于粒子的模拟中常用的构造,其中相互平衡的两相在单独的模拟盒中进行模拟。通过允许模拟盒交换化学物质和体积,可以保持化学和力学平衡。通过固定每个化学物质的总数和总体积,吉布斯系综允许在正则系综中有效地模拟两相在平衡时的体相。在提供了吉布斯系综中场论模拟的理论框架之后,我们在两个二维模型聚合物测试系统中演示了该方法,包括平均场极限(自洽场理论)和涨落场理论。

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