Metamaterials are artificial media which can provide optical properties not available from natural materials. These properties often result from the resonant excitation of plasmonic modes in the metallic building blocks ("metaatoms") of the metamaterial. Electromagnetic interactions between the metaatoms significantly modify the resonances of the individual metaatoms and influence the optical properties of the whole metamaterial. To better understand these interactions, we study in this Letter the evolution of the plasmonic near-field in the course of the transition from an isolated metaatom, in our case a split-ring resonator (SRR), to a photonic metamaterial via electron energy-loss spectroscopy. For small SRR ensembles, we observe the fo...
Metamaterials is a new field of interdisciplinary research, which deals with artificial material com...
Thesis (Ph.D.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authori...
12 pags., 8 figs. -- This article belongs to the Special Issue Plasmonics and Nano-Optics from UV to...
Metamaterials are artificial media which can provide optical properties not available from natural m...
Metamaterials are artificial media which can provide optical properties not available from natural m...
The coupling of multiple plasmonic resonators that sustain bright or dark modes provide intriguing s...
Optical metamaterials are artificially engineered structures composed of subwavelength units. They e...
Manipulating light is highly desired in photonics research. Restricted by the variable range of perm...
Split ring resonators (SRRs) were shown to exhibit electric and magnetic resonances from micro wave ...
The optical properties of metamaterials are prescribed not only by the properties of their constitut...
We report on a novel way of reducing plasmonic losses in noble metals commonly used in the fabricati...
Effective symmetric and antisymmetric eigenmodes of coupled plasmonic resonances play a crucial role...
Metamaterials and plasmonics based on micro- and nanostructured metallic-dielectric composites are b...
peer reviewedLayered metal/dielectric hyperbolic metamaterials (HMMs) support a wide landscape of pl...
Metamaterials are artificial materials that consist of subwavelength unit cells (meta-atoms). They a...
Metamaterials is a new field of interdisciplinary research, which deals with artificial material com...
Thesis (Ph.D.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authori...
12 pags., 8 figs. -- This article belongs to the Special Issue Plasmonics and Nano-Optics from UV to...
Metamaterials are artificial media which can provide optical properties not available from natural m...
Metamaterials are artificial media which can provide optical properties not available from natural m...
The coupling of multiple plasmonic resonators that sustain bright or dark modes provide intriguing s...
Optical metamaterials are artificially engineered structures composed of subwavelength units. They e...
Manipulating light is highly desired in photonics research. Restricted by the variable range of perm...
Split ring resonators (SRRs) were shown to exhibit electric and magnetic resonances from micro wave ...
The optical properties of metamaterials are prescribed not only by the properties of their constitut...
We report on a novel way of reducing plasmonic losses in noble metals commonly used in the fabricati...
Effective symmetric and antisymmetric eigenmodes of coupled plasmonic resonances play a crucial role...
Metamaterials and plasmonics based on micro- and nanostructured metallic-dielectric composites are b...
peer reviewedLayered metal/dielectric hyperbolic metamaterials (HMMs) support a wide landscape of pl...
Metamaterials are artificial materials that consist of subwavelength unit cells (meta-atoms). They a...
Metamaterials is a new field of interdisciplinary research, which deals with artificial material com...
Thesis (Ph.D.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authori...
12 pags., 8 figs. -- This article belongs to the Special Issue Plasmonics and Nano-Optics from UV to...