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Nonlinear relaxation of polarization and optical susceptibility of dielectric particles under sudden change of external field direction

机译:外场方向突然变化下介电粒子的极化和磁化率的非线性弛豫

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摘要

A dilute suspension of particles with permanent electric dipole moment and additional polarizability is subject to an applied electric field which suddenly changes its magnitude and direction. The time dependent behavior of the polarization and of the optical susceptibility is described by solving the Smoluchowski equation for the orientational distribution function. Because of the change of field direction the problem is not axially symmetric but by the proper choice of coordinate system the dynamical equations can be treated in the same manner as in the case of simple field switching on or field reversal. The two independent components of polarization and the nonvanishing elements of the optical susceptibility tensor are shown to be superpositionis of exponentially decaying functions of time. A fast numerical method is used to calculate the spectrum of decay rates and the amplitudes of the decaying modes. The time dependence of the difference of principal indices of refraction which produces birefringence is calculated from the difference of characteristic values of the susceptibility tensor. The relaxation behavior of polar particles with additional polarizability is compared with that of simpler polar particles.
机译:具有永久电偶极矩和附加极化性的稀颗粒悬浮液会受到施加电场的作用,该电场会突然改变其大小和方向。通过求解取向分布函数的Smoluchowski方程,描述了偏振和光敏感性的随时间变化的行为。因为磁场方向的变化的问题是不是轴向对称的,而是由坐标系的适当选择的动力学方程可以以相同的方式如在对简单场切换或磁场反向的情况下进行处理。偏振的两个独立分量和磁化率张量的不消失元素显示为时间的指数衰减函数的叠加。快速数值方法用于计算衰减率的频谱和衰减模式的幅度。由磁化率张量的特征值之差计算产生双折射的主折射率之差的时间依赖性。将具有附加极化性的极性粒子的弛豫行为与较简单的极性粒子的弛豫行为进行了比较。

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