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Scattering and absorption performance of a microsize graphene-based parabolic reflector in the THz range illuminated by a complex line source

机译:复杂线光源在太赫兹范围内的微小尺寸石墨烯基抛物面反射器的散射和吸收性能

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摘要

The scattering and absorption characteristics of a two- dimensional (2-D) parabolic reflector made of graphene and placed in the free space is simulated using the Method of Analytical Regularization (MAR) technique. Reflector is illuminated by a complex magnetic line source having a directive beam-like antenna pattern and placed in the geometrical focus of reflector. The total absorbed power and forward and backward directivities are computed. The surface plasmon (SP) resonances are observed. Besides, the scattering performance of the reflector is studied in dependence of the chemical potential of the graphene.
机译:使用分析正则化(MAR)技术模拟了由石墨烯制成并放置在自由空间中的二维(2-D)抛物面反射器的散射和吸收特性。反射器由具有定向波束状天线方向图的复杂电磁线源照亮,并放置在反射器的几何焦点中。计算总吸收功率以及前进和后退方向性。观察到了表面等离子体激元(SP)共振。此外,根据石墨烯的化学势来研究反射器的散射性能。

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