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The energy flow structure during the scattering of a plane electromagnetic wave by a magnetized plasma cylinder at volume plasmon resonances

机译:在体积等离子体谐振下磁化等离子体缸散射平面电磁波的能量流动结构

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The scattering of an obliquely incident H-polarized plane electromagnetic wave by a magnetized plasma cylinder is studied. It is assumed that the cylinder is located in free space and aligned with an external static magnetic field. The emphasis is placed on the case where the angular frequency of the incident wave coincides with one of the volume-plasmon resonance frequencies of the cylinder. The spatial structure of the energy flow patterns in the near zone of the scatterer is analyzed and the location of the regions with a greatly enhanced magnitude of the time-averaged Poynting vector is determined. It is shown that the sign reversal of the energy-flow component that is parallel to the cylinder axis can occur both at the surface of the cylinder and in its inner region.
机译:研究了倾斜入射的H偏振平面电磁波的散射通过磁化等离子体缸。假设圆筒位于自由空间中并与外部静态磁场对齐。将重点放置在入射波的角频率与气缸的体积等离子体谐振频率中的一个重合的情况下。分析了散射体的近区域中的能量流动图案的空间结构,并确定具有大大增强的时平型普托载体的区域的位置。结果表明,与汽缸轴线平行的能量流动分量的符号反转可以在气缸表面和内部区域中发生。

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