Metamaterials and their application in the performance enhancement of reconfigurable antennas: A review
Metamaterials exhibit properties in terms of subwavelength operation or phase
manipulation, among others, that can be used in a variety of applications in 5G …
manipulation, among others, that can be used in a variety of applications in 5G …
A review on metamaterial absorbers: Microwave to optical
YI Abdulkarim, A Mohanty, OP Acharya… - Frontiers in …, 2022 - frontiersin.org
Metamaterials (MM) are artificially designed materials that possess unique properties due to
their geometrical design. They also display some peculiar properties, such as negative …
their geometrical design. They also display some peculiar properties, such as negative …
Simulation and lithographic fabrication of a triple band terahertz metamaterial absorber coated on flexible polyethylene terephthalate substrate
YI Abdulkarim, M Xiao, HN Awl… - Optical Materials …, 2021 - opg.optica.org
A triple band metamaterial absorber in the terahertz range, incorporating a three closed
circle ring resonator, was designed and fabricated on flexible polyethylene terephthalate …
circle ring resonator, was designed and fabricated on flexible polyethylene terephthalate …
Double negative (DNG) metamaterial-based Koch fractal MIMO antenna design for sub-6-GHz V2X communication
F Ez-Zaki, H Belahrach, A Ghammaz, S Ahmad… - IEEE …, 2023 - ieeexplore.ieee.org
This paper presents the design an study of a DSRC/sub-6 GHz Koch fractal antenna single,
two and four elements integrated with metamaterial structures, are proposed for the C-V2X …
two and four elements integrated with metamaterial structures, are proposed for the C-V2X …
Overview of metamaterials-integrated antennas for beam manipulation applications: The two decades of progress
Metamaterials (MMs) are synthetic composite structures with superior properties not found in
naturally occurring materials. MMs have gained massive attention over the last two decades …
naturally occurring materials. MMs have gained massive attention over the last two decades …
[HTML][HTML] Electrically-tunable active metamaterials for damped elastic wave propagation control
An electrically-tunable metamaterial is herein designed for the active control of damped
elastic waves. The periodic device is conceived including both elastic phases and a …
elastic waves. The periodic device is conceived including both elastic phases and a …
[HTML][HTML] 3D printing of active mechanical metamaterials: A critical review
MY Khalid, ZU Arif, A Tariq, M Hossain, R Umer… - Materials & Design, 2024 - Elsevier
The emergence of mechanical metamaterials from 4D printing has paved the way for
developing advanced hierarchical structures with superior multifunctionalities. In particular …
developing advanced hierarchical structures with superior multifunctionalities. In particular …
Performance improvement of microstrip patch antenna using a novel double‐layer concentric rings metaplate for 5G millimeter wave applications
This paper presents the performance improvement of a microstrip patch antenna (MPA)
using a novel double‐layer concentric rings metaplate (DLCRM) for fifth‐generation (5G) …
using a novel double‐layer concentric rings metaplate (DLCRM) for fifth‐generation (5G) …
[HTML][HTML] CSRR inspired antenna using artificial neural network for sub 6 GHz 5G applications
M Shobana - Alexandria Engineering Journal, 2023 - Elsevier
The article investigates a compact low profile guitar shaped antenna loaded with co-
directional complementary split ring resonator (CO-CSRR) based on negative permittivity …
directional complementary split ring resonator (CO-CSRR) based on negative permittivity …
Development of metamaterial inspired non-uniform circular array superstate antenna using characteristic mode analysis
In this work, using characteristic mode analysis, a multi-layered nonuniform metasurface
structured antenna has been optimized. The driven patch of square structure and the …
structured antenna has been optimized. The driven patch of square structure and the …