作者: David Alcaraz Iranzo
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摘要: Graphene is used as a novel, versatile plasmonic material. The most common way to implement resonant light-plasmon coupling etch graphene into periodic nanostructures, which invasive. Here, we study non-invasive engineer plasmon resonance, based on doping profiles. resonances are calculated by performing numerical simulations. In addition, report simulations of near-field between dipole and plasmons. Finally, preliminary results the experimental realization reported. This demonstrates potential exploit plasmons for extreme energy confinement could lead strong nonlinear effects.