In this work we present a systematic methodology for realizing desired sheet impedances of printable metasurfaces. This methodology allows independent control of the sheet reactance (capacitance and series inductance) and its resistance, even if the conductor properties as well as the dielectric substrate thickness and permittivity are fixed due to manufacturing process restrictions. The derived analytical formulas allow us to easily find the physical dimensions of conductive patterns which implement the required surface impedance. Numerical verification of the method shows excellent agreement with the analytical predictions, allowing the design of an arbitrary impedance without any optimization process. The method can be applied for design...
Metasurfaces are a topic of significant research and are used in various applications due to their u...
Different electrically-thin absorbing designs based on High-Impedance Surfaces (HIS) are presented a...
The millimeter-wave frequency band spectrum represents a great opportunity for ultrahigh-speed, shor...
In this study, recent work on engineering R-card surface resistivity with printed metallic patterns ...
Perfect absorbing metamaterials comprising a metallic frequency selective surface printed on a thin ...
The public defense on 29th May 2020 at 18:00 (6 p.m.) will be organized via remote technology. Link...
As applications involving electromagnetic waves as carriers of energy and information have become co...
A new approach for obtaining metasurfaces realized by using frequency selective surfaces with reduce...
In this work, we investigate different printing technologies suitable for mass production of millime...
Metasurfaces are sub-wavelength scale (lambda<1/4), two dimensional (2D) periodic structures bein...
Metamaterial surfaces can be conceptualized by 2-dimensional periodic arrangement of many small flat...
The main contribution of this work is twofold. On one side, a survey over conductive or controlled r...
This paper presents a design method for thin but wideband absorbers using resistive sheets. Its equi...
In this work, we investigate different printing technologies suitable for mass production of millime...
High-impedance surfaces (HIS) comprising lossy frequency selective surfaces (FSS) are employed to de...
Metasurfaces are a topic of significant research and are used in various applications due to their u...
Different electrically-thin absorbing designs based on High-Impedance Surfaces (HIS) are presented a...
The millimeter-wave frequency band spectrum represents a great opportunity for ultrahigh-speed, shor...
In this study, recent work on engineering R-card surface resistivity with printed metallic patterns ...
Perfect absorbing metamaterials comprising a metallic frequency selective surface printed on a thin ...
The public defense on 29th May 2020 at 18:00 (6 p.m.) will be organized via remote technology. Link...
As applications involving electromagnetic waves as carriers of energy and information have become co...
A new approach for obtaining metasurfaces realized by using frequency selective surfaces with reduce...
In this work, we investigate different printing technologies suitable for mass production of millime...
Metasurfaces are sub-wavelength scale (lambda<1/4), two dimensional (2D) periodic structures bein...
Metamaterial surfaces can be conceptualized by 2-dimensional periodic arrangement of many small flat...
The main contribution of this work is twofold. On one side, a survey over conductive or controlled r...
This paper presents a design method for thin but wideband absorbers using resistive sheets. Its equi...
In this work, we investigate different printing technologies suitable for mass production of millime...
High-impedance surfaces (HIS) comprising lossy frequency selective surfaces (FSS) are employed to de...
Metasurfaces are a topic of significant research and are used in various applications due to their u...
Different electrically-thin absorbing designs based on High-Impedance Surfaces (HIS) are presented a...
The millimeter-wave frequency band spectrum represents a great opportunity for ultrahigh-speed, shor...