Negative refraction has generated much interest recently with its unprecedented optical phenomenon. However, a broadband negative refraction has been challenging because they mainly involve optical resonances. This paper reports the realization of broadband negative refraction in the visible spectrum by using vertically-stacked metal-dielectric multilayer structures. Such structure exploits the characteristics of the constituent metal and dielectric materials, and does not require resonance to achieve negative refraction. Broadband negative refraction (wavelength 270-1300 nm) is numerically demonstrated. Compared to conventional horizontally-stacked multilayer structures, the vertically-stacked multilayer structure has a broader range of wo...
This is a very comprehensive review article on electromagnetic metamaterials, written with one of th...
A metamaterial is an artificial material structured for the purpose of altering electromagnetic wave...
We numerically demonstrate negative refraction of the Poynting vector and sub-wavelength focusing in...
MasterNegative refraction has generated much interest recently with its unprecedented optical phenom...
Negative refraction is known to occur in materials that simultaneously possess a negative electric p...
Metamaterials are artificially engineered structures that have properties, such as a negative refrac...
The project discusses the means of achieving negative refraction through the implementation of two a...
In recent years, there has been a burgeoning interest in rapidly growing field of metamaterials due ...
The negative refraction and evanescent-wave canalization effects supported by a layered metamaterial...
The project discusses the means of achieving negative refraction through the implementation of multi...
When light travels from one medium to another with a different refractive index, it will bend at the...
Optical metamaterials—artificially structured materials with engineered electromagnetic responses at...
Metamaterial structures are artificial materials that show unconventional electromagnetic properties...
Metamaterials are artificially designedsubwavelength composites possessingextraordinary optical prop...
We experimentally demonstrate a low-loss multilayered metamaterial exhibiting a double-negative refr...
This is a very comprehensive review article on electromagnetic metamaterials, written with one of th...
A metamaterial is an artificial material structured for the purpose of altering electromagnetic wave...
We numerically demonstrate negative refraction of the Poynting vector and sub-wavelength focusing in...
MasterNegative refraction has generated much interest recently with its unprecedented optical phenom...
Negative refraction is known to occur in materials that simultaneously possess a negative electric p...
Metamaterials are artificially engineered structures that have properties, such as a negative refrac...
The project discusses the means of achieving negative refraction through the implementation of two a...
In recent years, there has been a burgeoning interest in rapidly growing field of metamaterials due ...
The negative refraction and evanescent-wave canalization effects supported by a layered metamaterial...
The project discusses the means of achieving negative refraction through the implementation of multi...
When light travels from one medium to another with a different refractive index, it will bend at the...
Optical metamaterials—artificially structured materials with engineered electromagnetic responses at...
Metamaterial structures are artificial materials that show unconventional electromagnetic properties...
Metamaterials are artificially designedsubwavelength composites possessingextraordinary optical prop...
We experimentally demonstrate a low-loss multilayered metamaterial exhibiting a double-negative refr...
This is a very comprehensive review article on electromagnetic metamaterials, written with one of th...
A metamaterial is an artificial material structured for the purpose of altering electromagnetic wave...
We numerically demonstrate negative refraction of the Poynting vector and sub-wavelength focusing in...