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Recent progresses on metamaterials for optical absorption and sensing: A review
Y Yao, Z Liao, Z Liu, X Liu, J Zhou, G Liu… - Journal of Physics D …, 2021 - iopscience.iop.org
Metamaterials (MMs) offer great potential for achieving optical absorption due to their novel
electromagnetic properties. MM absorbers can overcome the thickness limitation and …
electromagnetic properties. MM absorbers can overcome the thickness limitation and …
Design and optimization of broadband metamaterial absorber based on manganese for visible applications
Metamaterial absorbers have been extensively researched due to their potential
applications in photonics. This paper presents a highly efficient Broadband Metamaterial …
applications in photonics. This paper presents a highly efficient Broadband Metamaterial …
Altering the multimodal resonance in ultrathin silicon ring for tunable THz biosensing
A technique is implemented for altering the multimodal resonance generated in an ultrathin
silicon ring resonator-based terahertz (THz) absorber. The absorber provides the dual-band …
silicon ring resonator-based terahertz (THz) absorber. The absorber provides the dual-band …
Wide-angle metamaterial absorber with highly insensitive absorption for TE and TM modes
Being incident and polarization angle insensitive are crucial characteristics of metamaterial
perfect absorbers due to the variety of incident signals. In the case of incident angles …
perfect absorbers due to the variety of incident signals. In the case of incident angles …
[HTML][HTML] Tuning metallic stub loaded symmetrical resonator based dual band metamaterial absorber for wave shielding from Wi-Fi frequencies
In this article, a simple metamaterial absorber (MMA) is presented aiming absorption of
microwave signals from Wi-Fi frequencies of 2.4 GHz, and 5 GHz. The MMA unit cell …
microwave signals from Wi-Fi frequencies of 2.4 GHz, and 5 GHz. The MMA unit cell …
[HTML][HTML] Numerical study of a broadband metamaterial absorber using a single split circle ring and lumped resistors for X-band applications
We report a numerical study on the design of a broadband metamaterial absorber (MMA)
with a single layer of metal–dielectric–metal based on an FR-4 substrate for X-band …
with a single layer of metal–dielectric–metal based on an FR-4 substrate for X-band …
RETRACTED ARTICLE: Facile design of an ultra-thin broadband metamaterial absorber for C-band applications
NTQ Hoa, TS Tuan, LT Hieu, BL Giang - Scientific reports, 2019 - nature.com
We report a facile design of an ultra-thin broadband metamaterial absorber (MA) for C-band
applications by utilizing a single layer of a metal-dielectric-metal structure of FR-4 substrate …
applications by utilizing a single layer of a metal-dielectric-metal structure of FR-4 substrate …
Tunable asymmetric square split ring resonator based triple band metamaterial absorber for wireless communication system
This article presents a triple band square split ring with double circular split ring resonator
incident angle-insensitive perfect metamaterial absorber. The MMA unit cell was …
incident angle-insensitive perfect metamaterial absorber. The MMA unit cell was …
Generation of reflection colors from metal–insulator–metal cavity structure enabled by thickness-dependent refractive indices of metal thin film
J Kim, H Oh, M Seo, M Lee - Acs Photonics, 2019 - ACS Publications
Tunable structural colors have diverse applications ranging from displays and photovoltaics
to surface decoration and art. A metal–insulator–metal (MIM) cavity structure formed by thin …
to surface decoration and art. A metal–insulator–metal (MIM) cavity structure formed by thin …
Wide gamut, angle-insensitive structural colors based on deep-subwavelength bilayer media
H Pan, Z Wen, Z Tang, G Xu, X Pan, Q Xu, Y Lu… - …, 2020 - degruyter.com
Wide gamut and angle-insensitive structural colors are highly desirable for many
applications. Herein, a new type of lithography-free, planar bilayer nanostructures for …
applications. Herein, a new type of lithography-free, planar bilayer nanostructures for …