Luo Yi, Huang Lirong, Ding Jifei, Sun Bing, Hong Wei
Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, 1037 Luoyu Rd, Wuhan 430074, China.
Nanoscale. 2023 Aug 17;15(32):13335-13345. doi: 10.1039/d3nr01659e.
Hybrid anapole state, originating from the destructive interference of more than one basic electromagnetic multipole moments with their toroidal counterparts, enables the simultaneous suppression of multiple leading scattering channels, thereby demonstrates promising applications in perfect absorption and electromagnetic camouflage. However, the formation of hybrid anapoles is challenging because a careful overlap of electromagnetic multipoles with their toroidal counterparts is required. In this study, we propose and experimentally demonstrate a transparent and flexible assembled metasurface rasorber supporting hybrid anapole states for infrared and microwave camouflage, which not only supports low IR emissivity in the range of 8-14 μm but also exhibits an absorption-transmission-absorption response in the microwave band. In addition, the conformal and tunable performances of the fabricated metasurface rasorber are experimentally demonstrated. Our study provides a new strategy for designing multispectral camouflage metasurfaces.
混合阿纳波尔态源于多个基本电磁多极矩与其环形对应物的相消干涉,能够同时抑制多个主要散射通道,从而在完美吸收和电磁伪装方面展现出广阔的应用前景。然而,混合阿纳波尔态的形成具有挑战性,因为需要电磁多极与其环形对应物仔细重叠。在本研究中,我们提出并通过实验证明了一种用于红外和微波伪装的支持混合阿纳波尔态的透明且柔性的组装超表面吸收体,它不仅在8 - 14μm范围内具有低红外发射率,而且在微波波段呈现吸收 - 透射 - 吸收响应。此外,实验证明了所制备的超表面吸收体具有共形和可调性能。我们的研究为设计多光谱伪装超表面提供了一种新策略。