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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Thermodynamic properties of model solids with short-ranged potentials from monte carlo simulations and perturbation theory
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Thermodynamic properties of model solids with short-ranged potentials from monte carlo simulations and perturbation theory

机译:来自蒙特卡洛模拟和微扰理论的具有短程电势的模型固体的热力学性质

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Monte Carlo simulations have been performed to determine the excess energy and the equation of state of fcc solids with Sutherland potentials for wide ranges of temperatures, densities, and effective potential ranges. The same quantities have been determined within a perturbative scheme by means of two procedures: (i) Monte Carlo simulations performed on the reference hard-sphere system and (ii) second-order Barker-Henderson perturbation theory. The aim was twofold: on the one hand, to test the capability of the "exact" MC-perturbation theory of reproducing the direct MC simulations and, on the other hand, the reliability of the Barker-Henderson perturbation theory, as compared with direct MC simulations and MC-perturbation theory, to determine the thermodynamic properties of these solids depending on temperature, density, and potential range. We have found that the simulation data for the excess energy obtained from the two procedures are in close agreement with each other. For the equation of state, the results from the MC-perturbation procedure also agree well with the direct MC simulations except for very low temperatures and extremely short-ranged potentials. Regarding the Barker-Henderson perturbation theory, we have found that in general the second-order approximation does not provide significant improvement over the first-order one.
机译:已经进行了蒙特卡洛模拟,以确定在宽范围的温度,密度和有效电势范围内具有Sutherland电势的fcc固体的过剩能量和状态方程。在扰动方案中,通过两个过程确定了相同的数量:(i)在参考硬球系统上执行的蒙特卡洛模拟,以及(ii)二阶Barker-Henderson扰动理论。目的是双重的:一方面,测试“精确” MC摄动理论再现直接MC模拟的能力;另一方面,测试Barker-Henderson摄动理论与直接MC相比的可靠性。 MC模拟和MC扰动理论,可根据温度,密度和电势范围确定这些固体的热力学性质。我们发现,从这两个过程获得的多余能量的模拟数据彼此非常吻合。对于状态方程,除了非常低的温度和极短的电势之外,MC扰动过程的结果也与直接MC模拟非常吻合。关于Barker-Henderson微扰理论,我们发现一般而言,二阶逼近并不能提供比一阶逼近明显的改善。

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