Pradhan Jitendra K, Gopal Achanta Venu, Agarwal Amit K, Anantha Ramakrishna S
Appl Opt. 2020 Jun 10;59(17):E118-E125. doi: 10.1364/AO.388145.
A tri-layer metamaterial structure with enhanced absorption is demonstrated at infrared wavelengths by coating the top surface of the metamaterial absorber with an additional thin layer of dielectric material. The metamaterial absorber, which consists of a micrometer-sized metallic circular patch separated from a metal ground plane by a dielectric spacer layer, when coated with a supplementary protective dielectric layer on the top, shows a spectral red shift of the peak absorption along with a change in the absorption amplitude. The increase or decrease in absorption arises basically from an interference phenomenon of light reflected from the surface of the protective dielectric and the surface of metamaterial structures, and is highly dependent on the thickness of the top dielectric layer. The protective dielectric coatings provide an alternative way to modify and optimize the absorption in a metamaterial absorber along with a robustness that protects metamaterial structures from environmental and mechanical degradation.
通过在超材料吸收体的顶表面涂覆额外的薄介电材料层,在红外波长下展示了一种具有增强吸收的三层超材料结构。该超材料吸收体由一个微米级的金属圆形贴片组成,通过介电间隔层与金属接地平面隔开,当在顶部涂覆一层补充性的保护性介电层时,峰值吸收会出现光谱红移,同时吸收幅度也会发生变化。吸收的增加或减少基本上源于从保护性介电表面和超材料结构表面反射的光的干涉现象,并且高度依赖于顶部介电层的厚度。保护性介电涂层提供了一种修改和优化超材料吸收体吸收的替代方法,同时还具有保护超材料结构免受环境和机械降解影响的稳健性。