The nanoparticle on mirror (NPoM) construct is ideal for the strong coupling of localized plasmons because of its simple fabrication and the nanometer-scale gaps it offers. Both of these are much harder to control in nanoparticle dimers. Even so, realizing controllable gap sizes in a NPoM remains difficult and continuous tunability is limited. Here, we use reactive metals as the mirror so that the spacing layer of resulting metal oxide can be easily and controllably created with specific thicknesses resulting in continuous tuning of the plasmonic coupling. Using Al as a case study, we contrast different approaches for oxidation including electrochemical oxidation, thermal annealing, oxygen plasma treatments, and photo-oxidation by laser irr...
Since bimetallic nanomaterial was credited with far features beyond single metal nanomaterial and ha...
This body of work uses optical signatures of molecules to read out electrochemical events on plasmon...
Voltage controlled wavelength tuning of the localized surface plasmon resonance of gold nanoparticle...
The nanoparticle on mirror (NPoM) construct is ideal for the strong coupling of localized plasmons b...
Frequency control of plasmon resonances is important for optical sensing applications such as Surfac...
Metallodielectric nanostructures are enabling a revolution in optics. For centuries optical techniqu...
The optical properties of metallic nanoparticles are highly sensitive to interparticle distance, giv...
The smart design of plasmonic nanostructures offers a unique capability for the efficient conversion...
In this paper, we report on the effect of metal oxidation on strong coupling interactions between si...
The precise morphology of nanoscale gaps between noble-metal nanostructures controls their resonant ...
Surface plasmons are collective and coherent oscillations of conduction band electrons in metal nano...
The ability to study oxidation, reduction, and other chemical transformations of nanoparticles in re...
Designing tunable optical metamaterials is one of the great challenges in photonics. Strategies for ...
In this paper, we report on the effect of metal oxidation on strong coupling interactions between si...
Designing tunable optical metamaterials is one of the great challenges in photonics. Strategies for ...
Since bimetallic nanomaterial was credited with far features beyond single metal nanomaterial and ha...
This body of work uses optical signatures of molecules to read out electrochemical events on plasmon...
Voltage controlled wavelength tuning of the localized surface plasmon resonance of gold nanoparticle...
The nanoparticle on mirror (NPoM) construct is ideal for the strong coupling of localized plasmons b...
Frequency control of plasmon resonances is important for optical sensing applications such as Surfac...
Metallodielectric nanostructures are enabling a revolution in optics. For centuries optical techniqu...
The optical properties of metallic nanoparticles are highly sensitive to interparticle distance, giv...
The smart design of plasmonic nanostructures offers a unique capability for the efficient conversion...
In this paper, we report on the effect of metal oxidation on strong coupling interactions between si...
The precise morphology of nanoscale gaps between noble-metal nanostructures controls their resonant ...
Surface plasmons are collective and coherent oscillations of conduction band electrons in metal nano...
The ability to study oxidation, reduction, and other chemical transformations of nanoparticles in re...
Designing tunable optical metamaterials is one of the great challenges in photonics. Strategies for ...
In this paper, we report on the effect of metal oxidation on strong coupling interactions between si...
Designing tunable optical metamaterials is one of the great challenges in photonics. Strategies for ...
Since bimetallic nanomaterial was credited with far features beyond single metal nanomaterial and ha...
This body of work uses optical signatures of molecules to read out electrochemical events on plasmon...
Voltage controlled wavelength tuning of the localized surface plasmon resonance of gold nanoparticle...