Wang Ben-Xin, He Yuanhao, Lou Pengcheng, Zhu Huaxin
School of Science, Jiangnan University Wuxi 214122 China
Nanoscale Adv. 2020 Nov 24;3(2):455-462. doi: 10.1039/d0na00903b. eCollection 2021 Jan 26.
This paper presents a multi-band terahertz superabsorber with a surface structure that consists of a square metallic patch with a very small rectangular hole whose area is only 3.94% of the square patch. The introduction of a rectangular hole in the square patch plays an important role in achieving multi-band absorption. Three resonant bands with very high absorption (>95%) were observed in the terahertz range. Different from the near-field distributions of the traditional square patch with no modification, the introduction of a rectangular hole in the square patch can break the near-field distributions of the traditional square patch with no modification or can rearrange them to form some new or extra resonance modes, thereby generating multi-band absorption. Considering the fact that the introduced rectangular hole plays the key role in the rearrangement of the near-field and the introduction of some new resonance modes, the parameter changes of the rectangular hole introduced in the square patch provide considerable freedom in controlling the number of absorption peaks, and the resonant bands can be tuned to quad- or dual-band absorption. The multi-band superabsorbers given here should have potential applications in numerous areas.
本文提出了一种具有表面结构的多波段太赫兹超级吸收体,该表面结构由一个带有非常小的矩形孔的方形金属贴片组成,该矩形孔的面积仅为方形贴片的3.94%。在方形贴片中引入矩形孔对实现多波段吸收起着重要作用。在太赫兹范围内观察到了三个具有很高吸收率(>95%)的共振带。与未作修改的传统方形贴片的近场分布不同,在方形贴片中引入矩形孔可以打破未作修改的传统方形贴片的近场分布,或者重新排列它们以形成一些新的或额外的共振模式,从而产生多波段吸收。考虑到引入的矩形孔在近场重新排列以及引入一些新的共振模式中起关键作用,方形贴片中引入的矩形孔的参数变化在控制吸收峰数量方面提供了相当大的自由度,并且共振带可以调整为四波段或双波段吸收。这里给出的多波段超级吸收体在众多领域应具有潜在应用。