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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >Relaxation in homogeneous and non-homogeneous polarized systems. A mesoscopic entropy approach
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Relaxation in homogeneous and non-homogeneous polarized systems. A mesoscopic entropy approach

机译:在均匀和非均匀极化系统中的弛豫。介观熵方法

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摘要

The dynamics of a degree of freedom associated to an axial vector in contact with a heat bath is described by means of a probability distribution function obeying a Fokker-Planck equation. The equation is derived by using mesoscopic non-equilibrium thermodynamics and permits a formulation of a dynamical theory for the axial degree of freedom (orientation, polarization) and its associated order parameter. The theory is used to describe dielectric relaxation in homogeneous and non-homogeneous systems in the presence of strong electric fields. In the homogeneous case, we obtain the dependence of the relaxation time on the external field as observed in experiments. In the non-homogeneous case, our model accounts for the two observed maxima of the dielectric loss giving a good quantitative description of experimental data at all frequencies, especially for systems with low molecular mass.
机译:通过遵循Fokker-Planck方程的概率分布函数来描述与与热浴接触的轴向矢量相关的自由度的动力学。该方程式是通过使用介观非平衡热力学得出的,并允许为轴向自由度(取向,极化)及其相关阶数参数制定动力学理论。该理论用于描述在强电场存在下均质和非均质系统中的介电弛豫。在均匀情况下,我们获得了弛豫时间对外部场的依赖性,如在实验中观察到的那样。在非均匀情况下,我们的模型考虑了两个观察到的介电损耗最大值,从而很好地定量描述了所有频率下的实验数据,尤其是对于低分子质量的系统。

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