Savić Slobodan V, Notaroš Branislav M, Ilić Milan M
School of Electrical Engineering, University of Belgrade, Belgrade 11120, Serbia.
J Opt Soc Am A Opt Image Sci Vis. 2013 Jan 1;30(1):7-12. doi: 10.1364/JOSAA.30.000007.
A conformal cubical transformation-based metamaterial invisibility cloak is presented and verified, in the near and the far field, by a rigorous full-wave numerical technique based on a higher-order, large-domain finite element method, employing large anisotropic, continuously inhomogeneous generalized hexahedral finite elements, with no need for discretization of the permittivity and permeability profiles of the cloak. The analysis requires about 30 times fewer unknowns than with commercial software. To our knowledge, this is the first conformal cubical cloak and the first full-wave computational characterization of such a structure with sharp edges. The presented methodology can also be used in development of conformal, transformation-based perfectly matched layers.
提出并验证了一种基于共形立方变换的超材料隐身衣,在近场和远场中,通过基于高阶、大域有限元方法的严格全波数值技术进行验证,该方法采用大的各向异性、连续非均匀广义六面体有限元,无需对隐身衣的介电常数和磁导率分布进行离散化。与商业软件相比,该分析所需的未知数减少了约30倍。据我们所知,这是第一个共形立方隐身衣,也是对这种具有尖锐边缘结构的首次全波计算表征。所提出的方法也可用于基于变换的共形完美匹配层的开发。