Abstract Concealing objects from interrogation has been a primary objective since the integration of radars into surveillance systems. Metamaterial-based invisibility cloaking, which was considered a promising solution, did not yet succeed in delivering reliable performance against real radar systems, mainly due to its narrow operational bandwidth. Here we propose an approach, which addresses the issue from a signal-processing standpoint and, as a result, is capable of coping with the vast majority of unclassified radar systems by exploiting vulnerabilities in their design. In particular, we demonstrate complete concealment of a 0.25 square meter moving metal plate from an investigating radar system, operating in a broad frequency range app...
In this contribution, we present a time-modulated full-reflective metasurface able to realize a freq...
Here, we discuss the design of a cloaking metasurface (MTS) capable to engineer the scattering of an...
In this contribution, we present a time-modulated full-reflective metasurface able to realize a freq...
In radar countermeasures, the terms jamming and deception are used to indicate the intentional emiss...
In this contribution, we present and discuss the theoretical aspects, design and bandwidth limits of...
A Doppler cloak consists of a non-reciprocal space-time modulated metastructure that allows manipula...
Doppler cloak is a cover to be placed in front or wrapped around a moving object to restore the sour...
Although cloaks are effective at suppressing the observability of static objects, they can be defeat...
In this contribution, we report our results on the possibility of restoring the invisibility of cloa...
In this contribution, we present some important advancements in Doppler cloak technology, which is b...
The results of our studies towards the design of a metasurface able to make an antenna either invisi...
Invisibility or unhearability cloaks have been made possible by using metamaterials enabling light o...
Doppler cloaks are spatiotemporally modulated metamaterial covers to be placed in front or wrapped a...
In this contribution we present the opportunities offered by artificial non-reciprocity and frequenc...
We introduce the concept and practical design of broadband, ultrathin cloaks based on non-Foster, ne...
In this contribution, we present a time-modulated full-reflective metasurface able to realize a freq...
Here, we discuss the design of a cloaking metasurface (MTS) capable to engineer the scattering of an...
In this contribution, we present a time-modulated full-reflective metasurface able to realize a freq...
In radar countermeasures, the terms jamming and deception are used to indicate the intentional emiss...
In this contribution, we present and discuss the theoretical aspects, design and bandwidth limits of...
A Doppler cloak consists of a non-reciprocal space-time modulated metastructure that allows manipula...
Doppler cloak is a cover to be placed in front or wrapped around a moving object to restore the sour...
Although cloaks are effective at suppressing the observability of static objects, they can be defeat...
In this contribution, we report our results on the possibility of restoring the invisibility of cloa...
In this contribution, we present some important advancements in Doppler cloak technology, which is b...
The results of our studies towards the design of a metasurface able to make an antenna either invisi...
Invisibility or unhearability cloaks have been made possible by using metamaterials enabling light o...
Doppler cloaks are spatiotemporally modulated metamaterial covers to be placed in front or wrapped a...
In this contribution we present the opportunities offered by artificial non-reciprocity and frequenc...
We introduce the concept and practical design of broadband, ultrathin cloaks based on non-Foster, ne...
In this contribution, we present a time-modulated full-reflective metasurface able to realize a freq...
Here, we discuss the design of a cloaking metasurface (MTS) capable to engineer the scattering of an...
In this contribution, we present a time-modulated full-reflective metasurface able to realize a freq...