Publication | Closed Access
Laser-ablative engineering of phase singularities in plasmonic metamaterial arrays for biosensing applications
35
Citations
27
References
2014
Year
Optical MaterialsSuch Metamaterial ArraysEngineeringMetasurfacesMetamaterialsBiomedical EngineeringPlasmonic BiosensorsElectromagnetic MetamaterialsQuantum MetamaterialsMagnetoplasmonicsOptical PropertiesBiophysicsNanophotonicsPlasmonic MaterialPhotonicsPhotonic MaterialsPlasmonic Metamaterial ArraysPhase SingularitiesOptical SensorsPlasmonicsBiomedical DiagnosticsApplied PhysicsNanofabricationDynamic MetamaterialsLaser-ablative Engineering
By using methods of laser-induced transfer combined with nanoparticle lithography, we design and fabricate large-area gold nanoparticle-based metamaterial arrays exhibiting extreme Heaviside-like phase jumps in reflected light due to a strong diffractive coupling of localized plasmons. When employed in sensing schemes, these phase singularities provide the sensitivity of 5 × 104 deg. of phase shift per refractive index unit change that is comparable with best values reported for plasmonic biosensors. The implementation of sensor platforms on the basis of such metamaterial arrays promises a drastic improvement of sensitivity and cost efficiency of plasmonic biosensing devices.
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