Abstract:Plasmonic hot spots, capable of confining strong electromagnetic fields near metallic surfaces, are particularly essential to a variety of enhanced spectroscopic techniques. Understanding the electric field distributions in the hot spot plays a crucial role in controlling the fabrication of plasmonic nanostructures for a variety of plasmon-based applications. The investigation of plasmonic hot spots in metallic nanosystems has not been fully evaluated. Here, we develop a facile approach by experimental means f… Show more
The excitation line dependent transformation of the coupling mode from the “particle–particle” to the “particle–surface” mode was observed using an Au nanoparticles and plate coupled system.
The excitation line dependent transformation of the coupling mode from the “particle–particle” to the “particle–surface” mode was observed using an Au nanoparticles and plate coupled system.
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