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Theoretical study of extremely narrow plasmonic surface lattice resonances observed by MIM nanogratings under normal incidence in asymmetric environments

机译:MIM纳米光栅在不对称环境下法向入射下观测到的极窄等离子体表面晶格共振的理论研究

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摘要

Nanoarray structures can support plasmonic surface lattice resonances (SLRs) with extremely narrow linewidths and huge electric field enhancement features, which are attractive applications in nanolasers, biochemical sensors, and nonlinear optics. However, current nanoarray structures located in an asymmetric dielectric environment with a refractive index contrast of 1.00/1.52 of the superstrate/substrate excite much poorer SLRs under normal incidence, which largely limits their application range. In this work, we report extremely narrow SLRs supported by onedimensional metal–insulator–metal nanograting in asymmetric dielectric environments. The simulation results show that an SLRs with linewidth of 3.26 nm and quality factor of 233.2 can be excited under normal incidence. This high-quality SLRs is attributed to the interference formation between the out-of-plane dipole resonance mode and the out-of-plane quadrupole resonance mode. We also show that the resonance wavelength and quality factor can be tuned by changing the structure geometry and period, and we calculate the normal incidence SLRs quality factor to be up to 248 in 1.33/1.52 and 250 in 1.45/1.52. We expect the SLRs of this work to find potential applications in asymmetric dielectric environments.
机译:纳米阵列结构可以支持具有极窄线宽和巨大电场增强特性的等离子体表面晶格共振(SLR),这在纳米激光器、生化传感器和非线性光学中具有吸引力。然而,目前纳米阵列结构位于不对称介电环境中,上层/衬底的折射率对比度为1.00/1.52,在正常入射下激发的单反镜要差得多,这在很大程度上限制了它们的应用范围。在这项工作中,我们报道了在不对称介电环境中由一维金属-绝缘体-金属纳米光栅支持的极窄单反相机。仿真结果表明,线宽为3.26 nm、品质因子为233.2的单反相机在正常入射率下均能被激发。这种高质量的单反相机归因于面外偶极子谐振模式和面外四极子谐振模式之间的干涉形成。我们还表明,可以通过改变结构几何形状和周期来调节共振波长和品质因子,并计算出法向入射单反的品质因子在1.33/1.52中高达248,在1.45/1.52中高达250。我们预计这项工作的单反相机将在不对称介电环境中找到潜在的应用。

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