首页> 外文会议>International Kharkov Symposium Physics and Engineering of Millimeter and Sub-Millimeter Waves >Separation of the Instantaneous and Dynamic Polarizations in Studies of Dispersive Dielectrics Kharkov, Ukraine, June 25-30, 2007
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Separation of the Instantaneous and Dynamic Polarizations in Studies of Dispersive Dielectrics Kharkov, Ukraine, June 25-30, 2007

机译:分离分散电介质研究中的瞬时和动态偏振,乌克兰,2007年6月25日,乌克兰

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Forced oscillations are studied in a closed resonator filled with a polar dielectric. Time-dependent current density is installed in Maxwell''s equations as an externally forced signal source. The latter can be an arbitrary integrable function of time. The system of Maxwell''s equations (with 驴t) is solved simultaneously with Debye equation for the polarization vector, which plays role of a dynamic constitutive relation between the polarization vector and the electric field. The electromagnetic field vectors are presented as modal expansions in terms of the solenoidal and irrotational modes both with time-dependent modal amplitudes. A set of evolutionary differential equations for the modal amplitudes, supplemented with appropriate initial conditions, is derived and solved explicitly. The instantaneous and dynamic component parts of polarization are present in the solutions separately.
机译:在填充有极电介质的闭合谐振器中研究强制振荡。时间相关的电流密度在MaxWell的方程中安装为外部强制信号源。后者可以是任意时间的时间函数。 MaxWell等式(用驴T)的系统同时解决了偏振向量的德语方程,其起着偏振矢量与电场之间的动态本构体关系的作用。电磁场向量呈现为螺线管和无调节模式的模态扩展,两者都有时间依赖的模态幅度。一组用于模态振幅的进化微分方程,并明确地赋予了适当的初始条件。偏振的瞬时和动态分量部分分别存在于溶液中。

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