论文标题
相互等离的元信息:理论和应用
Reciprocal plasmonic metasurfaces: Theory and applications
论文作者
论文摘要
提出了用于跨表面结构的新配置,以实现多功能功能,包括完美的吸收,生物/化学传感和表面模式激光。此处讨论的相互等离子体上的等离子质面是由介电间隔物分离的两个等几何形状的等离子体表面。与传统的元信息相比,这种简单的几何形状表现出增强的光学性能。讨论的倒数跨表面设计进一步实现了有效的结构优化,并允许简单可扩展的制造。使用数值和分析方法证明了相互等离子体跨面的物理原理和潜在应用。
A new configuration for metasurface construction is presented to achieve multi-functional capabilities including perfect absorption, bio/chem sensing, and surface-mode lasing. The reciprocal plasmonic metasurfaces discussed here are composed of two plasmonic surfaces of reciprocal geometries separated by a dielectric spacer. Compared to conventional metasurfaces this simple geometry exhibits an enhanced optical performance. The discussed reciprocal metasurface design further enables effective structural optimization and allows for a simple and scalable fabrication. The physical principle and potential applications of the reciprocal plasmonic metasurfaces are demonstrated using numerical and analytical approaches.