[[abstract]]We show that magnetic response at terahertz frequencies can be achieved in a planar structure composed of nonmagnetic conductive resonant elements. The effect is realized over a large bandwidth and can be tuned throughout the terahertz frequency regime by scaling the dimensions of the structure. We suggest that artificial magnetic structures, or hybrid structures that combine natural and artificial magnetic materials, can play a key role in terahertz devices.[[fileno]]2020319010001[[department]]材料
In this work, we study the electromagnetic properties of a metamaterial made by a cubic array of TiO...
Thesis (Ph.D.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authori...
We introduce a new approach of materials design for terahertz magnonics making use of quantum confin...
Compared to the neighboring infrared and microwave regions, the terahertz regime is still in need of...
Artificial materials are three dimensional surfaces which can manipulate, focus and filter electro-m...
Metamaterials are artificial composites that acquire their electromagnetic properties from embedded ...
We use finite element simulations in both the frequency and the time-domain to study the terahertz r...
Spintronics is a spin-electronic field where the electron spinangular momentum, in conjunction with ...
We employ the generalized Lorentz-Lorenz method to investigate how both magnetoelectric coupling and...
Abstract—A new planar engineered material structure, which has multiple Fano resonances at the terah...
The major issue regarding magnetic response in nature—“negative values for the permeability μ of mat...
Known experimental artificial magnetic conductors for terahertz and optical frequencies are formed b...
We investigate new classes of artificial materials exhibiting unconventional properties in order to ...
We present a design of dielectric metamaterials exhibiting a broad range of negative effective perme...
Metamaterials have arisen in an attempt to engineer the electromagnetic properties of natural substa...
In this work, we study the electromagnetic properties of a metamaterial made by a cubic array of TiO...
Thesis (Ph.D.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authori...
We introduce a new approach of materials design for terahertz magnonics making use of quantum confin...
Compared to the neighboring infrared and microwave regions, the terahertz regime is still in need of...
Artificial materials are three dimensional surfaces which can manipulate, focus and filter electro-m...
Metamaterials are artificial composites that acquire their electromagnetic properties from embedded ...
We use finite element simulations in both the frequency and the time-domain to study the terahertz r...
Spintronics is a spin-electronic field where the electron spinangular momentum, in conjunction with ...
We employ the generalized Lorentz-Lorenz method to investigate how both magnetoelectric coupling and...
Abstract—A new planar engineered material structure, which has multiple Fano resonances at the terah...
The major issue regarding magnetic response in nature—“negative values for the permeability μ of mat...
Known experimental artificial magnetic conductors for terahertz and optical frequencies are formed b...
We investigate new classes of artificial materials exhibiting unconventional properties in order to ...
We present a design of dielectric metamaterials exhibiting a broad range of negative effective perme...
Metamaterials have arisen in an attempt to engineer the electromagnetic properties of natural substa...
In this work, we study the electromagnetic properties of a metamaterial made by a cubic array of TiO...
Thesis (Ph.D.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authori...
We introduce a new approach of materials design for terahertz magnonics making use of quantum confin...