Yang Xiuhua, Xiao Gongli, Lu Yuanfu, Li Guangyuan
Opt Express. 2019 Sep 2;27(18):25384-25394. doi: 10.1364/OE.27.025384.
Plasmonic surface lattice resonances (SLRs) supported by metal nanoparticle arrays exhibit narrow linewidths and enhanced localized fields and thus are attractive in diverse applications including nanolasers, biochemical sensors and nonlinear optics. However, it has been shown that these SLRs have much worse performance in a less symmetric environment, hindering their practical applications. Here, we propose a novel type of narrow SLRs that is supported by metal-insulator-metal nanopillar arrays and that has better performance in a less symmetric dielectric environment. When the dielectric environment is as asymmetric as the air/polymer environment with a refractive index contrast of 1.0/1.52, the proposed SLRs have high quality factors of 62 under normalincidence and of 147 under oblique incidence in the visible regime. We attribute these new SLRs to Fano resonance between an in-plane dipole and an out-of-plane quadrupole (or dipole) that are respectively supported by the two metal ridges under normal (or oblique) incidence. We also show that the resonance wavelength can be tuned by varying the geometric sizes or by changing the angle of incidence. By doing this, we clarify the conditions for the formation of the proposed SLRs and illustrate their attractive merits in sensing applications. We expect that this new SLR can open up applications in asymmetric dielectric environments.
由金属纳米颗粒阵列支持的表面等离激元晶格共振(SLRs)具有窄线宽和增强的局域场,因此在包括纳米激光器、生化传感器和非线性光学在内的各种应用中具有吸引力。然而,已经表明,这些SLRs在对称性较低的环境中性能要差得多,这阻碍了它们的实际应用。在此,我们提出了一种新型的窄SLRs,它由金属-绝缘体-金属纳米柱阵列支持,并且在对称性较低的介电环境中具有更好的性能。当介电环境像空气/聚合物环境那样不对称,折射率对比度为1.0/1.52时,所提出的SLRs在可见光区域正入射下具有62的高品质因数,斜入射下具有147的高品质因数。我们将这些新的SLRs归因于面内偶极子与面外四极子(或偶极子)之间的法诺共振,它们分别在正入射(或斜入射)下由两个金属脊支持。我们还表明,可以通过改变几何尺寸或改变入射角来调谐共振波长。通过这样做,我们阐明了所提出的SLRs形成的条件,并说明了它们在传感应用中的诱人优点。我们期望这种新的SLR能够在不对称介电环境中开拓应用。