In this contribution we propose, design and numerically analyze a plasmonic metamaterial for enhanced optical absorption, based on 100 nm thick titanium carbide (Ti3C2Tx) MXene sheets. The analyzed metamaterial is built as a sandwich with a solid MXene bottom (ground) layer, a lossless dielectric middle layer and an MXene mesh top layer. The unit cell of the periodic top mesh consists of two crossed ultrathin MXene strips, each of them spreading its width in step-like increments towards the middle of the unit cell. This ensures position-variable width of the top surface apertures, resulting in a widening of the bandwidth of spectral dispersion of the scattering parameters of the obtained metamaterial. We utilize the finite element method to...
Metamaterials are artificial structures which can manipulate electromagnetic (EM) waves at will. The...
Despite the fact that metal is the most common conducting constituent element in the fabrication of ...
Two-dimensional metasurfaces are widely focused on for their ability for flexible light manipulation...
Nanocomposites are among the most prominent subjects of material science and enable an enormous numb...
MXenes are an emerging class of two-dimensional (2D) materials consisting of carbides, nitrides or c...
Composites designed by employing metal/dielectric composites coupled to the components of the incide...
MXene, the new family of 2D materials having numerous nanoscale layers, is being considered as a nov...
Metamaterials are composites that are engineered purposefully for realizing electromagnetic characte...
Efficient modeling of electromagnetic processes in optical and plasmonic metamaterials is important ...
The manipulation of light at the nanoscale has become a fascinating research field called nanophoton...
We present a simple design for a broadband tunable terahertz (THz) metamaterial absorber (MMA) consi...
Terahertz (THz) shielding becomes increasingly important with the growing development of THz electro...
In this work we review methods to decrease the optical absorption losses in metamaterials. The pract...
In this work, we present and explore the characteristics of a plasmonic metamaterial absorber based ...
Due to the extraordinary optoelectronic properties and surface-rich functional groups, MXene has sho...
Metamaterials are artificial structures which can manipulate electromagnetic (EM) waves at will. The...
Despite the fact that metal is the most common conducting constituent element in the fabrication of ...
Two-dimensional metasurfaces are widely focused on for their ability for flexible light manipulation...
Nanocomposites are among the most prominent subjects of material science and enable an enormous numb...
MXenes are an emerging class of two-dimensional (2D) materials consisting of carbides, nitrides or c...
Composites designed by employing metal/dielectric composites coupled to the components of the incide...
MXene, the new family of 2D materials having numerous nanoscale layers, is being considered as a nov...
Metamaterials are composites that are engineered purposefully for realizing electromagnetic characte...
Efficient modeling of electromagnetic processes in optical and plasmonic metamaterials is important ...
The manipulation of light at the nanoscale has become a fascinating research field called nanophoton...
We present a simple design for a broadband tunable terahertz (THz) metamaterial absorber (MMA) consi...
Terahertz (THz) shielding becomes increasingly important with the growing development of THz electro...
In this work we review methods to decrease the optical absorption losses in metamaterials. The pract...
In this work, we present and explore the characteristics of a plasmonic metamaterial absorber based ...
Due to the extraordinary optoelectronic properties and surface-rich functional groups, MXene has sho...
Metamaterials are artificial structures which can manipulate electromagnetic (EM) waves at will. The...
Despite the fact that metal is the most common conducting constituent element in the fabrication of ...
Two-dimensional metasurfaces are widely focused on for their ability for flexible light manipulation...