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Nonmonotonic composition dependence of vibrational phase relaxation rate in binary mixtures

机译:二元混合物中振动相弛豫速率的非单调成分依赖性

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We present here isothermal-isobaric N-P-T ensemble molecular dynamics simulations of vibrational phase relaxation in a model system to explore the unusual features arising due to concentration fluctuations which are absent in one component systems. The model studied consider strong attractive interaction between the dissimilar species to discourage phase separation. The model reproduces the experimentally observed nonmonotonic, nearly symmetric, composition dependence of the dephasing rate. In addition, several other experimentally observed features, such as the maximum of the frequency modulation correlation time tau(c) at mole fraction near 0.5 and the maximum rate enhancement by a factor of about 3 above the pure component value, are also reproduced. The product of mean square frequency modulation [] with tau(c) indicates that the present model is in the intermediate regime of inhomogeneous broadening. The nonmonotonic composition chi(A) dependence of the dephasing time tau(v) is found to be primarily due to the nonmonotonic chi dependence of tau(c), rather than due to a similar dependence in the amplitude of . The probability distribution of Delta omega shows a markedly non-Gaussian behavior at intermediate composition (chi(A)similar or equal to 0.5). We have also calculated the composition dependence of the viscosity in order to explore the correlation between the composition dependence of viscosity eta* with that of tau(v) and tau(c). It is found that both the correlation time essentially follow the composition dependence of the viscosity. A mode coupling theory is presented to include the effects of composition fluctuations in binary mixture. (C) 2005 American Institute of Physics.
机译:我们在此介绍模型系统中振动相弛豫的等温-等压N-P-T整体分子动力学模拟,以探索由于一个组分系统中不存在的浓度波动引起的异常特征。研究的模型考虑了异种之间的强吸引力相互作用,以阻止相分离。该模型再现了移相速率的实验观察到的非单调,近对称的成分依赖性。另外,还重现了其他一些实验观察到的特征,例如摩尔分数接近0.5时的调频相关时间tau(c)的最大值以及最大速率提高了纯组分值约3倍。均方频率调制[<Δomega(2)(0)>]与tau(c)的乘积表明本模型处于非均匀展宽的中间状态。发现移相时间tau(v)的非单调成分chi(A)依赖性主要是由于tau(c)的非单调chi依赖性,而不是由于。三角洲Ω的概率分布在中间成分(chi(A)相似或等于0.5)处显示出明显的非高斯行为。我们还计算了粘度的成分依赖性,以探索粘度eta *与tau(v)和tau(c)的成分依赖性之间的相关性。发现两个相关时间基本上遵循粘度的组成依赖性。提出了一种模式耦合理论,其中包括二元混合物中成分波动的影响。 (C)2005美国物理研究所。

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