Publication | Open Access
Electric dipole-quadrupole hybridization induced enhancement of second-harmonic generation in T-shaped plasmonic heterodimers
14
Citations
64
References
2018
Year
EngineeringMetamaterialsT-shaped Plasmonic HeterodimersMagnetoplasmonicsOptical PropertiesPlasmonic Shg EfficiencyPlasmonic MaterialMaterials ScienceElectric Dipole-quadrupole HybridizationShg EfficiencyPhysicsNanotechnologySecond-harmonic GenerationPlasmonicsPlasmonic CatalysisNanomaterialsEdqh EvolutionNatural SciencesApplied PhysicsDynamic Metamaterials
In this work, we demonstrate computationally that electric dipole-quadrupole hybridization (EDQH) could be utilized to enhance plasmonic SHG efficiency. To this end, we construct T-shaped plasmonic heterodimers consisting of a short and a long gold nanorod with finite element method simulation. By controlling the strength of capacitive coupling between two gold nanorods, we explore the effect of EDQH evolution on the SHG process, including the SHG efficiency enhancement, corresponding near-field distribution, and far-field radiation pattern. Simulation results demonstrate that EDQH could enhance the SHG efficiency by a factor >100 in comparison with that achieved by an isolated gold nanorod. Additionally, the far-field pattern of the SHG could be adjusted beyond the well-known quadrupolar distribution and confirms that EDQH plays an important role in the SHG process.
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