单轴等离子体元表面对介质层抗反射性能的影响

Q4 Physics and Astronomy
M. Beletskii, І. D. Popovych
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引用次数: 1

摘要

主题和目的。研究无反射电磁波在边界含有超表面的固态结构中传播的影响,对于提高性能和创造新型的纳米电子和光学器件具有重大的科学和实际意义。本工作的目的是研究位于介电层边界的各向异性单轴等离子体元表面对电磁波无反射传播的影响。研究电磁波通过边界含有超表面的固态结构的无反射传播效应,对于提高性能和创造新型纳米电子和光学器件具有重大的科学和实际意义。方法和方法。采用数值模拟方法研究了无反射电磁波在介质层上各向异性单轴等离子体超表面中传播的影响。它用于确定电介质层的厚度和磁导率值,对其进行了观察。后果结果表明,介电层上各向异性单轴等离子体元表面的存在导致p偏振电磁波沿着和穿过元表面各向异性主轴的无反射传播效果的显著条件变化。结果表明,超表面消除了介电层磁导率值的严格限制。为了实现电磁波无反射传播的效果,可以在宽范围内选择介电层的磁导率。结论具有各向异性单轴等离子体元表面的介电层对于电磁波的无反射传播效果具有明显更好的特性。它们可以用来制造全新的纳米电子和光学设备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
INFLUENCE OF UNIAXIAL PLASMON METASURFACE ON ANTIREFLECTION PROPERTIES OF DIELECTRIC LAYER
Subject and Purpose. Th e study of the eff ect of refl ectionless electromagnetic waves propagation through solid-state structures containing metasurfaces at its boundaries has a great scientifi c and practical interest for improving the performance and creating new types of nanoelectronics and optics devices. Th e aim of this work is to study the eff ect of an anisotropic uniaxial plasmon metasurface located at the boundary of the dielectric layer on the eff ect of refl ectionless propagation of electromagnetic waves. The study of the effect of refl ectionless propagation of electromagnetic waves through solid-state structures containing metasurfaces at its boundaries is of great scientific and practical interest for improving the performance and creating new types of nanoelectronics and optics devices. Methods and Methodology. Numerical simulations were used to study the effect of the refl ectionless electromagnetic waves propagation through an anisotropic uniaxial plasma metasurface lying on the dielectric layer. It is used to determine the thicknesses and permeability values of the dielectric layer, for which the effect was observed. Results. It is shown that the presence of an anisotropic uniaxial plasmon metasurface on the dielectric layer leads to a signifi cant conditions change of the eff ect of refl ectionless propagation of p-polarized electromagnetic waves along and across the main axis of anisotropy of the metasurface. It was shown that the metasurface removes the rigid restriction of the dielectric layer permeability value. To achieve the effect of refl ectionless propagation of electromagnetic waves, the permeability of the dielectric layer can be chosen within a wide range. Conclusion. Dielectric layers with anisotropic uniaxial plasmonic metasurfaces have signifi cantly better characteristics for the effect of refl ectionless propagation of electromagnetic waves. They can be used to create fundamentally new nanoelectronic and optical devices.
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来源期刊
Radio Physics and Radio Astronomy
Radio Physics and Radio Astronomy Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
0.60
自引率
0.00%
发文量
18
审稿时长
8 weeks
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