The theoretical method to design negative refractive index metamaterials by single negative permittivity metamaterials is presented. By designing the electric and magnetic response metamaterials separately, the complexity of the design work can be simplified a lot. For the magnetic response metamaterials, the metallic post structure is adopted. Varying the height of the post, the response wavelength can be adjusted linearly. For electric metamaterials, wire-mesh structure is adopted. The effective material parameters, including refractive index, impedance, permittivity and permeability are given. Such a structure has negative refractive index during a broad frequency band and easy to design
A metamaterial is an artificial material structured for the purpose of altering electromagnetic wave...
The discoveries and subsequent developments within the field of metamaterials have opened up for nov...
There has been a considerable amount of recent interest in the class of composite metamaterials that...
This paper presents a novel metamaterial constructed with wires, spheres and hollow slabs (WSHS), wh...
This paper presents a novel metamaterial constructed with wires, spheres and hollow slabs (WSHS), wh...
Metamaterials are designed to have structures that make available properties not found in Nature. Th...
recently, lots of research has been done for artificial material or metamaterials whose property doe...
Abstract We propose a very simple design method of neg-ative refractive index (NRI) materials that c...
This paper analyzed the new compact design and negative refractive index (NRI) metamaterial for wide...
The Metamaterials are artificial composite structures that exhibit a homogeneous effective permittiv...
Metamaterials are artificial periodic media with unusual electromagnetic properties. The size of the...
We propose a novel way to achieve an exceptionally wide frequency range where metamaterial possesses...
Metamaterials are artificially engineered materials, which exhibit properties that do not exist in n...
A metamaterial is an artificial material structured for the purpose of altering electromagnetic wave...
The design of a metamaterial with an electronically tunable negative refractive index region is pres...
A metamaterial is an artificial material structured for the purpose of altering electromagnetic wave...
The discoveries and subsequent developments within the field of metamaterials have opened up for nov...
There has been a considerable amount of recent interest in the class of composite metamaterials that...
This paper presents a novel metamaterial constructed with wires, spheres and hollow slabs (WSHS), wh...
This paper presents a novel metamaterial constructed with wires, spheres and hollow slabs (WSHS), wh...
Metamaterials are designed to have structures that make available properties not found in Nature. Th...
recently, lots of research has been done for artificial material or metamaterials whose property doe...
Abstract We propose a very simple design method of neg-ative refractive index (NRI) materials that c...
This paper analyzed the new compact design and negative refractive index (NRI) metamaterial for wide...
The Metamaterials are artificial composite structures that exhibit a homogeneous effective permittiv...
Metamaterials are artificial periodic media with unusual electromagnetic properties. The size of the...
We propose a novel way to achieve an exceptionally wide frequency range where metamaterial possesses...
Metamaterials are artificially engineered materials, which exhibit properties that do not exist in n...
A metamaterial is an artificial material structured for the purpose of altering electromagnetic wave...
The design of a metamaterial with an electronically tunable negative refractive index region is pres...
A metamaterial is an artificial material structured for the purpose of altering electromagnetic wave...
The discoveries and subsequent developments within the field of metamaterials have opened up for nov...
There has been a considerable amount of recent interest in the class of composite metamaterials that...