论文标题
等离子表面晶格共振增强的宽带四波混合,并在方位chir的光栅中局部表面等离子体共振
Broadband Four-Wave Mixing Enhanced by Plasmonic Surface Lattice Resonance and Localized Surface Plasmon Resonance in an Azimuthally Chirped Grating
论文作者
论文摘要
通过专门优化与特定非线性光学过程中涉及的不同波长相匹配的共振等离子模式,可以通过专门优化谐振等离子模式来实现非线性光 - 物质相互作用的等离子增强。在这项工作中,我们研究了等离子方位角搅动的光栅(ACG)中宽带四波混合(FWM)的产生和增强。 ACG中的方位角变化的光栅周期性提供了一个定义明确的通道,可在广泛的波长上介导近场和远场。但是,在这种平台中负责现场增强的特定机制取决于凹槽几何形状和光栅周期性所表现出的效果之间的相互作用。这项工作描述了凹槽几何学依赖性的局部表面等离子体共振(LSPR)和周期性依赖性等离子等离子表面晶格共振(PSLR)在广泛的波长中,以使ACG中宽带FWM的增强效果。
Plasmonic enhancement of nonlinear light-matter interaction can be achieved via dedicated optimization of resonant plasmonic modes that are spectrally matched to the different wavelengths involved in the particular nonlinear optical process. In this work, we investigate the generation and enhancement of broadband four-wave mixing (FWM) in a plasmonic azimuthally chirped grating (ACG). The azimuthally varying grating periodicity in an ACG offers a well-defined channel to mediate the near field and the far field over a broad range of wavelengths. However, the particular mechanism responsible for field enhancement in such a platform depends on the interplay between the effects manifested by both the groove geometry and the grating's periodicity. This work delineates the collective contribution of groove geometry-dependent localized surface plasmon resonance (LSPR) and periodicity-dependent plasmonic surface lattice resonance (PSLR) over a broad range of wavelengths to bring into effect the enhancement of broadband FWM in an ACG.