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Time-correlation functions in molecular liquids studied by the mode-coupling theory based on the interaction-site model

机译:基于相互作用位点模型的模式耦合理论研究分子液体中的时间相关函数

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Numerical results for longitudinal current spectra, velocity autocorrelation functions, and diffusion coefficients of a model diatomic liquid are presented using the recently developed theory for dynamics of classical polyatomic fluids. The theory is based on the interaction-site model for molecular liquids, the projection-operator formalism, and mode-coupling theory. The effect of the inclusion of a slow contribution in memory kernels, represented by the mode-coupling expression, on the aforementioned dynamical quantities is discussed. A molecular dynamics simulation of the same system is also performed to test the accuracy of our theory, and the theoretical results are found to be in fair agreement with those obtained from the simulation. [S1063-651X(98)01412-3]. [References: 38]
机译:使用最新开发的经典多原子流体动力学理论,给出了模型双原子液体的纵向电流谱,速度自相关函数和扩散系数的数值结果。该理论基于分子液体的相互作用位点模型,投影算子形式主义和模式耦合理论。讨论了以模式耦合表达式表示的在内存内核中包含缓慢贡献的作用对上述动态量的影响。还对同一系统进行了分子动力学模拟,以验证我们理论的准确性,并且发现理论结果与从模拟中获得的结果完全一致。 [S1063-651X(98)01412-3]。 [参考:38]

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