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首页> 外文期刊>The Journal of Chemical Physics >Static and dynamic critical behavior of a symmetrical binary fluid: A computer simulation
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Static and dynamic critical behavior of a symmetrical binary fluid: A computer simulation

机译:对称二元流体的静态和动态临界行为:计算机模拟

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A symmetrical binary, A+B Lennard-Jones mixture is studied by a combination of semi-grand-canonical Monte Carlo (SGMC) and molecular dynamics (MD) methods near a liquid-liquid critical temperature T-c. Choosing equal chemical potentials for the two species, the SGMC switches identities (A -> B -> A) to generate well-equilibrated configurations of the system on the coexistence curve for T < T-c and at the critical concentration, x(c)=1/2, for T>T-c. A finite-size scaling analysis of the concentration susceptibility above T-c and of the order parameter below T-c is performed, varying the number of particles from N=400 to 12 800. The data are fully compatible with the expected critical exponents of the three-dimensional Ising universality class. The equilibrium configurations from the SGMC runs are used as initial states for microcanonical MD runs, from which transport coefficients are extracted. Self-diffusion coefficients are obtained from the Einstein relation, while the interdiffusion coefficient and the shear viscosity are estimated from Green-Kubo expressions. As expected, the self-diffusion constant does not display a detectable critical anomaly. With appropriate finite-size scaling analysis, we show that the simulation data for the shear viscosity and the mutual diffusion constant are quite consistent both with the theoretically predicted behavior, including the critical exponents and amplitudes, and with the most accurate experimental evidence. (c) 2006 American Institute of Physics.
机译:通过在液-液临界温度T-c附近结合半经典正则蒙特卡罗(SGMC)和分子动力学(MD)方法研究了对称的二元A + B Lennard-Jones混合物。为这两种物质选择相等的化学势,SGMC切换身份(A-> B-> A),以在T Tc时为1/2。对Tc上方的浓度磁化率和Tc以下的阶数参数进行了有限尺寸缩放分析,将粒子数从N = 400更改为12800。数据与三维预期的临界指数完全兼容伊辛通用类。 SGMC运行的平衡构型被用作微规范MD运行的初始状态,从中提取出传输系数。自扩散系数是从爱因斯坦关系中获得的,而互扩散系数和剪切粘度是根据格林-久保表达式估算的。不出所料,自扩散常数未显示可检测的临界异常。通过适当的有限尺寸缩放分析,我们显示出剪切粘度和相互扩散常数的模拟数据与理论上的预测行为(包括临界指数和振幅)以及最准确的实验证据都非常一致。 (c)2006年美国物理研究所。

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