Shen Yizhu, Chen Na, Dong Guoqing, Hu Sanming
Opt Lett. 2021 Apr 1;46(7):1550-1553. doi: 10.1364/OL.417004.
The spoof localized surface plasmon (LSP) has been widely investigated but mostly with fixed multipole resonances. This Letter proposes a method to generate multipole resonances by adding a slit on the metallic ring of a complementary LSP. This slit theoretically introduces two new boundary conditions and new modes. To validate this approach, complementary LSPs with and without slits at three different angular positions are theoretically analyzed and numerically simulated. To validate and demonstrate the potential application of the proposed LSP structure, a bandpass filter (BPF) in a single-layer substrate is designed and measured by exciting the LSP with a slit on the metallic ring. The measured results show that by simply adding a slit, the BPF achieves a fractional bandwidth of 42.7% (2.5 GHz), for both ||<-10 and || within 1 dB variation. In the passband, a flat group delay between 0.57 ns and 0.75 ns is obtained. Moreover, the proposed structure features a low profile and a compact radius of 0.136 wavelength. By dynamically controlling slit/slits with varactors or diodes, the proposed structure is theoretically promising to be reconfigurable at microwave and even terahertz frequencies.
赝局域表面等离子体(LSP)已得到广泛研究,但大多是针对固定的多极共振。本文提出一种通过在互补LSP的金属环上添加狭缝来产生多极共振的方法。从理论上讲,该狭缝引入了两个新的边界条件和新模式。为验证此方法,对在三个不同角位置有无狭缝的互补LSP进行了理论分析和数值模拟。为验证并展示所提出的LSP结构的潜在应用,设计并测量了单层衬底中的带通滤波器(BPF),通过激发金属环上带有狭缝的LSP来实现。测量结果表明,通过简单地添加一个狭缝,BPF在||<-10以及||在1 dB变化范围内时实现了42.7%(2.5 GHz)的分数带宽。在通带内,获得了0.57 ns至0.75 ns之间的平坦群延迟。此外,所提出的结构具有低剖面和0.136波长的紧凑半径。通过用变容二极管或二极管动态控制一个或多个狭缝,从理论上讲,所提出的结构有望在微波甚至太赫兹频率下实现可重构。