The paper reports spectral features of the absorbed electromagnetic (EM) waves in a new kind of multilayered plasmonic metamaterial thin film comprised of homogenous layers of copper and silicon as the bottom and the middle sections (of the thin film), respectively, and the inhomogeneous U-shaped nanoengineered gold layer as the top. Each unit cell of the top metasurface consists of one upside and one downside U-shaped (butt-facing) structure. The absorbance of EM waves is simulated in the wavelength range of 200−1500 nm under different incidence angles considering the wave as being transmitted from the metasurface side. The low-order TE and TM modes are taken into account for the estimation of wave absorbance under varying metasurfaces as ...
We present the design for an absorbing metamaterial (MM) with near unity absorbance A!. Our structur...
Light–matter interactions are extremely important, as they sustain life on Earth and can be tailored...
In this work, we present and explore the characteristics of a plasmonic metamaterial absorber based ...
The paper reports spectral features of the absorbed electromagnetic (EM) waves in a new kind of mult...
A broadband thin film plasmonic metamaterial absorber nanostructure that operates in the frequency r...
This paper investigates the absorption spectra of a plasmonic metamaterial absorber in the visible a...
ABSTRACT: We demonstrate a broadband, polarization independent, omnidirectional absorber based on a ...
Due to the problems that the metal pattern layer on the top of the traditional metamaterial structur...
Light-matter interactions are extremely important, as they sustain life on Earth and can be tailored...
Spectral control of light in the visible range is one of the fundamental topics in optical applicati...
We have studied several metamaterials structures with multiple layers by explaining them theoretical...
We have studied several metamaterials structures with multiple layers by explaining them theoretical...
Spectral control of light in the visible range is one of the fundamental topics in optical applicati...
Light-matter interactions are extremely important, as they sustain life on Earth and can be tailored...
Surrounded by tons of electromagnetic devices, understanding wave-matter interaction plays a pivotal...
We present the design for an absorbing metamaterial (MM) with near unity absorbance A!. Our structur...
Light–matter interactions are extremely important, as they sustain life on Earth and can be tailored...
In this work, we present and explore the characteristics of a plasmonic metamaterial absorber based ...
The paper reports spectral features of the absorbed electromagnetic (EM) waves in a new kind of mult...
A broadband thin film plasmonic metamaterial absorber nanostructure that operates in the frequency r...
This paper investigates the absorption spectra of a plasmonic metamaterial absorber in the visible a...
ABSTRACT: We demonstrate a broadband, polarization independent, omnidirectional absorber based on a ...
Due to the problems that the metal pattern layer on the top of the traditional metamaterial structur...
Light-matter interactions are extremely important, as they sustain life on Earth and can be tailored...
Spectral control of light in the visible range is one of the fundamental topics in optical applicati...
We have studied several metamaterials structures with multiple layers by explaining them theoretical...
We have studied several metamaterials structures with multiple layers by explaining them theoretical...
Spectral control of light in the visible range is one of the fundamental topics in optical applicati...
Light-matter interactions are extremely important, as they sustain life on Earth and can be tailored...
Surrounded by tons of electromagnetic devices, understanding wave-matter interaction plays a pivotal...
We present the design for an absorbing metamaterial (MM) with near unity absorbance A!. Our structur...
Light–matter interactions are extremely important, as they sustain life on Earth and can be tailored...
In this work, we present and explore the characteristics of a plasmonic metamaterial absorber based ...