SIMULATION OF THE PROPAGATION OF A PLANE ELECTROMAGNETIC WAVE IN AN INHOMOGENEOUS NONABSORBING MEDIUM

O. Mazmanishvili, Ganna Sydorenko
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Abstract

Analytical solutions of the Ishimaru's parabolic equation for the coherence function of the electromagnetic field, which describe the temporal properties of the pulse at the output of a heterogeneous non-dissipative medium, are considered. A generalization of the approach used in the Ishimaru model to describe the time evolution of a monochromatic electromagnetic pulse enveloping in homogeneous non-dissipative media is obtained for the case of non-homogeneous non-dissipative media. Thus, an attempt was made to take into account the influence of the heterogeneity of the medium on the shape of the resulting pulse. When solving the given problem, the difficulties associated with the calculation of the continuous integral arising in the space of diffusion trajectories were overcome. This made it possible to obtain an explicit expression for the Green's function of the task and to build a computational algorithm based on which a number of numerous experiments were conducted. The analysis of the work was carried out based on the apparatus of quadratic integral functionals based on the solutions of differential stochastic equations. In the paper, the invariant temporal properties of the envelope of monochromatic electromagnetic pulses recorded after passing through a flat layer of a scattering heterogeneous medium, i.e., properties that remain unchanged when the parameters of the medium vary, in particular, the distribution of the concentration of scattering centers. The dynamics of the formation of time plumes of the scattered wave, in which the tail part is located in the peripheral time area, were analyzed. When propagating at the speed of transformation of the wave front, it reflects the appearance of the layers of the scattering region and its longitudinal shape. It is noted that the development of the proposed approximation approach to the processes affecting the time delay of electromagnetic pulses can be the accounting for the attenuation of radiation during its propagation in an inhomogeneous absorbing medium.
模拟平面电磁波在非均质非吸收介质中的传播
研究了石丸抛物线方程对电磁场相干函数的分析解,该方程描述了脉冲在异质非耗散介质输出端的时间特性。石丸模型用于描述包络在均质非耗散介质中的单色电磁脉冲的时间演化的方法,在非均质非耗散介质的情况下得到了推广。因此,我们尝试考虑介质的异质性对所产生的脉冲形状的影响。在解决给定问题时,克服了与计算扩散轨迹空间中产生的连续积分有关的困难。这使得获得任务的格林函数的明确表达式和建立计算算法成为可能,并在此基础上进行了大量实验。这项工作的分析是在基于微分随机方程解的二次积分函数装置的基础上进行的。在论文中,记录了单色电磁脉冲通过散射异质介质的平面层后包络的不变时间特性,即当介质参数变化时保持不变的特性,特别是散射中心的浓度分布。分析了散射波形成时间羽流的动力学过程,其中尾部位于外围时间区域。当以波前变换速度传播时,它反映了散射区域的层状外观及其纵向形状。我们注意到,针对影响电磁脉冲时间延迟的过程所提出的近似方法的发展,可以用来计算辐射在非均质吸收介质中传播时的衰减。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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