Publication | Open Access
Validation of electromagnetic field enhancement in near-infrared through Sierpinski fractal nanoantennas
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Citations
33
References
2014
Year
EngineeringElectromagnetic MetamaterialsOptical PropertiesInfrared OpticConventional Bowtie AntennasElectromagnetic Field EnhancementPhotonicsPhysicsPhotonic MaterialsAntennaSierpinski Fractal NanoantennasMicrowave AntennaBowtie AntennasFractal GeometryPlasmonicsInfrared SensorApplied PhysicsAntenna DesignNanofabricationDynamic MetamaterialsMultiband Antennas
We introduced fractal geometry to the conventional bowtie antennas. We experimentally and numerically showed that the resonance of the bowtie antennas goes to longer wavelengths, after each fractalization step, which is considered a tool to miniaturize the main bowtie structure. We also showed that the fractal geometry provides multiple hot spots on the surface, and it can be used as an efficient SERS substrate.
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