Many promising nanophotonics endeavors hinge upon the unique plasmonic properties of nanometallic structures with narrow nonmetallic gaps, which support superconcentrated bonding modes that singularly redshift with decreasing separations. In this Rapid Communication, we present a descriptive physical picture, complemented by elementary asymptotic formulas, of a nonlocal mechanism for plasmon redshift saturation at subnanometric gap widths. Thus, by considering the electron-charge and field distributions in the close vicinity of the metal-vacuum interface, we show that nonlocality is asymptotically manifested as an effective potential discontinuity. For bonding modes in the near-contact limit, the latter discontinuity is shown to be effectiv...
Ultrathin dielectric gaps between metals can trap plasmonic optical modes with surprisingly low loss...
According to the hydrodynamic Drude model, surface plasmon resonances of metallic nanostructures blu...
Classical electrodynamics describes the optical response of macroscopic systems, where the boundarie...
Excitation of surface-plasmon resonances of closely spaced nanometallic structures is a key techniqu...
Classical nonlocality in conducting nanostructures has been shown to dramatically alter the linear o...
With advances in nanofabrication techniques, extreme-scale nanophotonic devices with critical gap di...
Metals support surface plasmons at optical wavelengths and have the ability to localize light to sub...
We present the optical response of two interacting metallic nanowires calculated for separation dist...
Using a fully quantum mechanical approach we study the optical response of a strongly coupled metall...
We present a transformation-optics approach which sheds analytical insight into the impact that spat...
A local model of the dielectric response of a metal predicts that singular surfaces, such as sharp-e...
Historically, the field of plasmonics has been relying on the framework of classical electrodynamics...
The field of plasmonics investigates how electromagnetic fields can be confined into sub- wavelength...
The effect of nonlocality on the optical response of metals lies at the forefront of research in nan...
This manuscript is mainly focused on the influence of repulsion between free electrons on the optica...
Ultrathin dielectric gaps between metals can trap plasmonic optical modes with surprisingly low loss...
According to the hydrodynamic Drude model, surface plasmon resonances of metallic nanostructures blu...
Classical electrodynamics describes the optical response of macroscopic systems, where the boundarie...
Excitation of surface-plasmon resonances of closely spaced nanometallic structures is a key techniqu...
Classical nonlocality in conducting nanostructures has been shown to dramatically alter the linear o...
With advances in nanofabrication techniques, extreme-scale nanophotonic devices with critical gap di...
Metals support surface plasmons at optical wavelengths and have the ability to localize light to sub...
We present the optical response of two interacting metallic nanowires calculated for separation dist...
Using a fully quantum mechanical approach we study the optical response of a strongly coupled metall...
We present a transformation-optics approach which sheds analytical insight into the impact that spat...
A local model of the dielectric response of a metal predicts that singular surfaces, such as sharp-e...
Historically, the field of plasmonics has been relying on the framework of classical electrodynamics...
The field of plasmonics investigates how electromagnetic fields can be confined into sub- wavelength...
The effect of nonlocality on the optical response of metals lies at the forefront of research in nan...
This manuscript is mainly focused on the influence of repulsion between free electrons on the optica...
Ultrathin dielectric gaps between metals can trap plasmonic optical modes with surprisingly low loss...
According to the hydrodynamic Drude model, surface plasmon resonances of metallic nanostructures blu...
Classical electrodynamics describes the optical response of macroscopic systems, where the boundarie...