| Literature DB >> 28335398 |
Dongdong Liu1,2, Jicheng Wang3, Feng Zhang4, Yuewu Pan5, Jian Lu6, Xiaowu Ni7.
Abstract
A wavelength band-pass filter with asymmetric dual circular ring resonators in a metal-insulator-metal (MIM) structure is proposed and numerically simulated. For the interaction of the local discrete state and the continuous spectrum caused by the side-coupled resonators and the baffle, respectively, the transmission spectrum exhibits a sharp and asymmetric profile. By adjusting the radius and material imbedded in one ring cavity, the off-to-on plasmon-induced absorption (PIA) optical response can be tunable achieved. In addition, the structure can be easily extended to other similar compact structures to realize the filtering task. Our structures have important potential applications for filters and sensors at visible and near-infrared regions.Entities:
Keywords: integrated optics devices; metal-insulator-metal (MIM); plasmonics; sensors; waveguides
Year: 2017 PMID: 28335398 PMCID: PMC5375871 DOI: 10.3390/s17030585
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1Schematic of the structure composed of two shunt-wound rings resonators with two waveguides and the structure parameters are w = 50 nm, g = 20 nm, and t = 10 nm.
Figure 2Real part of the effective refractive index n versus the incident wavelength λ and the width w in MIM waveguide.
Figure 3Transmission spectra of two shunt-wound rings system (a) for different radius r’ of the lower ring; (b) for different refractive index n of the lower ring.
Figure 4Transmission spectrum of the MIM waveguide with two shunt-wound ring resonators when r’ = 213 nm; the contour profiles of magnetic intensity distributions |Hz|2 of the device at (a) λ = 940 nm; (b) λ = 967 nm; (c) λ = 991 nm.
Figure 5Schematic of the structure composed of two series-wound ring resonators with two waveguides.
Figure 6Transmission spectrum of the MIM waveguide with two series-wound ring resonators when r = r’ = 225 nm; the contour profiles of magnetic intensity distributions |Hz|2 of the device at (a) λ = 961 nm; (b) λ = 986 nm; (c) λ = 1027 nm. The insets denote the corresponding Hz distribution of SPPs in the PIT systems.
Figure 7Transmission spectrum of the MIM waveguide with two concentric rings resonators when r’ = 158 nm, w’ = 20 nm, and n’ = 1.02; the contour profiles of magnetic intensity distributions |Hz|2 of the device at (a) λ = 898 nm; (b) λ = 921 nm; (c) λ = 1035 nm. The insets denote the corresponding Hz distribution of SPPs in the concentric rings system.