In this contribution we present the most recent results from our group about the opportunities offered by time-varying metamaterials and metasurfaces for conceiving antenna systems and devices exhibiting artificial non-reciprocity, frequency conversion, energy accumulation and temporal electromagnetic scattering. Such artificial metastructures are characterized by constitutive parameters (permittivity, permeability and/or surface impedance) that are modulated in time through an external control or requires modulated excitation signal for enabling anomalous scattering behaviour. Here, we briefly describe the physical insights of the unusual interaction arising between the electromagnetic field and such metamaterials and metasurfaces, and the...
Electromagnetic scattering typically occurs when a change in the material properties is perceived by...
Metasurfaces have shown their great capability to manipulate electromagnetic waves. As a new concept...
Temporal metamaterials are artificial materials whose electromagnetic properties change over time. I...
In this contribution we present the most recent results from our group about the opportunities offer...
In this contribution we present the opportunities offered by artificial non-reciprocity and frequenc...
Time-varying metamaterials and metasurfaces have unlocked a novel way for the electromagnetic waves ...
In this contribution we present the recent advancements of active time-varying modulated metamateria...
Conventionally, antennas are reciprocal devices, exhibiting the same properties in transmission and ...
In telecommunications, antennas are one of the key elements of the entire system, without which the ...
In this contribution, we present our recent results on the study of the propagation and design of th...
Metasurfaces consisting of electrically thin and densely packed planar arrays of subwavelength eleme...
In this contribution, we present the latest developments from our group on metasurfaces for antenna ...
Metamaterial technology has provided us with new tools to explore fascinating applications and physi...
In this chapter, we review the potential application of metamaterials to microwave antennas. After a...
Interaction of electromagnetic radiation with time-variant objects is a fundamental problem whose st...
Electromagnetic scattering typically occurs when a change in the material properties is perceived by...
Metasurfaces have shown their great capability to manipulate electromagnetic waves. As a new concept...
Temporal metamaterials are artificial materials whose electromagnetic properties change over time. I...
In this contribution we present the most recent results from our group about the opportunities offer...
In this contribution we present the opportunities offered by artificial non-reciprocity and frequenc...
Time-varying metamaterials and metasurfaces have unlocked a novel way for the electromagnetic waves ...
In this contribution we present the recent advancements of active time-varying modulated metamateria...
Conventionally, antennas are reciprocal devices, exhibiting the same properties in transmission and ...
In telecommunications, antennas are one of the key elements of the entire system, without which the ...
In this contribution, we present our recent results on the study of the propagation and design of th...
Metasurfaces consisting of electrically thin and densely packed planar arrays of subwavelength eleme...
In this contribution, we present the latest developments from our group on metasurfaces for antenna ...
Metamaterial technology has provided us with new tools to explore fascinating applications and physi...
In this chapter, we review the potential application of metamaterials to microwave antennas. After a...
Interaction of electromagnetic radiation with time-variant objects is a fundamental problem whose st...
Electromagnetic scattering typically occurs when a change in the material properties is perceived by...
Metasurfaces have shown their great capability to manipulate electromagnetic waves. As a new concept...
Temporal metamaterials are artificial materials whose electromagnetic properties change over time. I...