Plasmonics aims at combining features of photonics and electronics by coupling photons with a free-electron gas, whose subwavelength oscillations (surface plasmons) enable manipulation of light at the nanoscale and engender the exciting properties of optical metamaterials. Plasmonics is facing a grand challenge of overcoming metal losses impeding its progress. We reflect on the reasons why subwavelength confinement and loss are intimately intertwined and investigate the physics of loss in conductors beyond the conventional Drude model. We suggest that commonly used noble metals may not be the best materials for plasmonics and describe alternate materials such as transparent conducting oxides and transition metal nitrides. We consider the pr...
Nano-optics is usually associated with plasmonic structures made of noble metals to enhance the elec...
Alternative materials are required to enhance the efficacy of plasmonic devices. We discuss the opti...
These authors contributed equally to this work. Plasmonics is a research area merging the fields of ...
We report on a novel way of reducing plasmonic losses in noble metals commonly used in the fabricati...
Metamaterials (MMs) are artificial, engineered materials with rationally designed compositions and a...
In recent years, the emerging areas of nanophotonics and, in particular, plasmonics and metamaterial...
Metamaterials (MMs) are artificial, engineered materials with rationally designed compositions and a...
Metamaterials (MMs) are artificial, engineered materials with rationally designed compositions and a...
Recent advancements in metamaterials and plasmonics have promised a number of exciting applications,...
Recent advancements in metamaterials and plasmonics have promised a number of exciting applications,...
We show that, for the resonant metal-dielectric structures with sub-wavelength confinement of light ...
We review conducting materials like metals, conducting oxides and graphene for nanophotonic applicat...
In the past decade or two, the field of nanophotonics has seen rapid development, empowered by intro...
From molecular sensors to perfect lenses, plasmonic devices promise a wealth of breakthrough applica...
We review conducting materials like metals, conducting oxides and graphene for nanophotonic applicat...
Nano-optics is usually associated with plasmonic structures made of noble metals to enhance the elec...
Alternative materials are required to enhance the efficacy of plasmonic devices. We discuss the opti...
These authors contributed equally to this work. Plasmonics is a research area merging the fields of ...
We report on a novel way of reducing plasmonic losses in noble metals commonly used in the fabricati...
Metamaterials (MMs) are artificial, engineered materials with rationally designed compositions and a...
In recent years, the emerging areas of nanophotonics and, in particular, plasmonics and metamaterial...
Metamaterials (MMs) are artificial, engineered materials with rationally designed compositions and a...
Metamaterials (MMs) are artificial, engineered materials with rationally designed compositions and a...
Recent advancements in metamaterials and plasmonics have promised a number of exciting applications,...
Recent advancements in metamaterials and plasmonics have promised a number of exciting applications,...
We show that, for the resonant metal-dielectric structures with sub-wavelength confinement of light ...
We review conducting materials like metals, conducting oxides and graphene for nanophotonic applicat...
In the past decade or two, the field of nanophotonics has seen rapid development, empowered by intro...
From molecular sensors to perfect lenses, plasmonic devices promise a wealth of breakthrough applica...
We review conducting materials like metals, conducting oxides and graphene for nanophotonic applicat...
Nano-optics is usually associated with plasmonic structures made of noble metals to enhance the elec...
Alternative materials are required to enhance the efficacy of plasmonic devices. We discuss the opti...
These authors contributed equally to this work. Plasmonics is a research area merging the fields of ...