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Diffraction of a Cylindrical Wave by a Perfectly Conducting Cylinder Enclosed in a Metamaterial Shell with a Negative Refractive Index

机译:完美传导圆柱体包裹在具有负折射率的超材料壳中对圆柱波的衍射

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摘要

The problem of diffraction of a plane (cylindrical) wave by a perfectly conducting cylinder enclosed in a metamaterial shell is rigorously solved. The influence of the geometric dimensions of the shell, the value of the negative refractive index of the metamaterial medium, and the position of a cylindrical wave source on the field structure in the near zone of the scatterer is investigated. It is found that, in the quasi-optical range of the problem parameters, this structure does not exhibit ideal focusing. It is shown that, there are two types of caustics inside the shell. The first type is related with rays reflected by the surface of the interior cylinder and has one cusp point, and the second type is formed by the geometric-optics rays that are refracted by the outer boundary of the shell and do not fall on the surface of the interior perfectly conducting cylinder. The spatial distribution of the total field amplitude and of the equal-amplitude lines in the near zone of the scatterer is reported. The obtained numerical results are correctly interpreted from the physical viewpoint.
机译:严格地解决了由特异材料壳中包裹的完美传导圆柱体对平面(圆柱)波进行衍射的问题。研究了壳的几何尺寸,超材料介质的负折射率的值以及圆柱波源的位置对散射体附近区域中场结构的影响。已经发现,在问题参数的准光学范围内,该结构没有表现出理想的聚焦。结果表明,壳内部有两种腐蚀剂。第一种类型与内部圆柱体表面反射的射线有关,并且具有一个尖点,第二种类型是由几何光学射线形成的,该几何光学射线在壳体的外边界处折射并且不落在表面上内部完美导电的圆柱体。报告了散射体附近区域中的总场振幅和等幅线的空间分布。从物理角度正确解释了获得的数值结果。

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