论文标题
对元构造的观点
A perspective on meta-boundaries
论文作者
论文摘要
电磁边界的明智设计提供了控制光 - 物质相互作用的关键途径,因此它对基础科学和实际应用至关重要。一般设计方法依赖于对超构造或底物的块状特性的操纵以及边界几何形状的修饰。由于最近出现了元浮面和低维材料,因此边界可以以表面电导率灵活地特征,这可能很复杂,但可以提供额外的自由度来调节光的传播。从这个角度来看,我们用非零的表面电导率表示边界为元边界。根据电磁边界条件,元构造分为四种类型,即各向同性,各向异性,生物性和双异构元元控制。因此,审查了这四种元基团的最新发展。最后,提供了对元基团的研究趋势的前景,尤其是通过同时利用荟萃仪和超材料来操纵光 - 物质相互作用。
The judicious design of electromagnetic boundary provides a crucial route to control light-matter interactions, and it is thus fundamental to basic science and practical applications. General design approaches rely on the manipulation of bulk properties of superstrate or substrate and on the modification of boundary geometries. Due to the recent advent of metasurfaces and low-dimensional materials, the boundary can be flexibly featured with a surface conductivity, which can be rather complex but provide an extra degree of freedom to regulate the propagation of light. In this perspective, we denote the boundary with a non-zero surface conductivity as the meta-boundary. The meta-boundaries are categorized into four types, namely isotropic, anisotropic, biisotropic and bianisotropic meta-boundaries, according to the electromagnetic boundary conditions. Accordingly, the latest development for these four kinds of meta-boundaries are reviewed. Finally, an outlook on the research tendency of meta-boundaries is provided, particularly on the manipulation of light-matter interactions by simultaneously exploiting meta-boundaries and metamaterials.