In this work, we study the electrodynamics of metamaterials that consist of resonant non-magnetic inclusions embedded in an epsilon-near-zero (ENZ) host medium. It is shown that the inclusions can be designed in such a way that both the effective permittivity and permeability of the composite structure are simultaneously zero. Two different metamaterial configurations are studied and analyzed in detail. For a particular class of problems, it is analytically proven that such matched zero-index metamaterials may help improving the transmission through a waveguide bend, and that the scattering parameters may be completely independent of the specific arrangement of the inclusions and of the granularity of the crystal. The proposed concepts are ...
We designed a low-loss double-negative composite metamaterial that operates at the millimeter-wave r...
Introducing a dielectric inclusion inside an epsilon-near-zero (ENZ) host has been shown to dramatic...
In this work, we investigate the response of epsilon-near-zero (ENZ) metamaterials and plasmonic mat...
In this work, we study the electrodynamics of metamaterials that consist of resonant non-magnetic in...
Zero-index material is a typical metamaterial with an effective zero refractive index, possessing a ...
We present a new type of near-zero index (NZI) and epsilon near-zero (ENZ) metametarial with broad b...
We present a new type of near-zero index (NZI) and epsilon near-zero (ENZ) metametarial with broad b...
In this work, we investigate the response of epsilon-near-zero metamaterials and plasmonic materials...
In this work, we investigate the response of epsilon-near-zero metamaterials and plasmonic materials...
Synthetic composite structures, known as metamaterials, have been increasingly applied in the past t...
Utilizing a microwave setup, we experimentally verify our recently developed theory of energy squeez...
Utilizing a microwave setup, we experimentally verify our recently developed theory of energy squeez...
Natural diamagnetism, while being a common phenomenon, is limited to permeability values close to un...
In this work, we investigate the response of epsilon-near-zero (ENZ) metamaterials and plasmonic mat...
Metamaterials and metastructures with effective relative permittivity near zero exhibit unusual wave...
We designed a low-loss double-negative composite metamaterial that operates at the millimeter-wave r...
Introducing a dielectric inclusion inside an epsilon-near-zero (ENZ) host has been shown to dramatic...
In this work, we investigate the response of epsilon-near-zero (ENZ) metamaterials and plasmonic mat...
In this work, we study the electrodynamics of metamaterials that consist of resonant non-magnetic in...
Zero-index material is a typical metamaterial with an effective zero refractive index, possessing a ...
We present a new type of near-zero index (NZI) and epsilon near-zero (ENZ) metametarial with broad b...
We present a new type of near-zero index (NZI) and epsilon near-zero (ENZ) metametarial with broad b...
In this work, we investigate the response of epsilon-near-zero metamaterials and plasmonic materials...
In this work, we investigate the response of epsilon-near-zero metamaterials and plasmonic materials...
Synthetic composite structures, known as metamaterials, have been increasingly applied in the past t...
Utilizing a microwave setup, we experimentally verify our recently developed theory of energy squeez...
Utilizing a microwave setup, we experimentally verify our recently developed theory of energy squeez...
Natural diamagnetism, while being a common phenomenon, is limited to permeability values close to un...
In this work, we investigate the response of epsilon-near-zero (ENZ) metamaterials and plasmonic mat...
Metamaterials and metastructures with effective relative permittivity near zero exhibit unusual wave...
We designed a low-loss double-negative composite metamaterial that operates at the millimeter-wave r...
Introducing a dielectric inclusion inside an epsilon-near-zero (ENZ) host has been shown to dramatic...
In this work, we investigate the response of epsilon-near-zero (ENZ) metamaterials and plasmonic mat...