The absence of sources in complete background domains causes the non-scattering property of such scenarios (free propagation). Developing this consideration to extremes based on its vector nature, a Source Cloaking Equation (SCE) is derived, supporting the design of exotic electromagnetic responses for cloaking devices. A numerical example demonstrates how solutions of the SCE show a non-scattering behaviour: possible implementations with metasurfaces are suggested
The aim of this Communication is to investigate and demonstrate the possibility to overcome the fund...
We present a semiclassical description of non-magnetic cloaking. The semiclassical result is confirm...
In this contribution, the fundamental bounds that apply to low-scattering antennas are discussed and...
The absence of sources in complete background domains causes the non-scattering property of such sce...
An analytical approach for controlling the zeros of a scattering event (i.e., cloaking) is given, su...
"In this Chapter, we review the theoretical analysis and the design principles of electromagnetic cl...
The synthesis of non-magnetic 2D dielectric cloaks as proper solutions of an inverse scattering prob...
In this contribution, we present our latest results concerning the design of microwave mantle cloaki...
The purpose of this paper is to explore electromagnetic cloaking by addressing the following questio...
Cloaking devices designed using the coordinate transform approach were shown to be realizable, at le...
We discuss the global scattering response of invisibility cloaks over the entire electromagnetic spe...
In this paper, the synthesis of dielectric cloaks is solved in terms of an inverse scattering proble...
We experimentally demonstrated an alternative approach of invisibility cloaking that can combine tec...
This paper describes some non-singular cloaks for camouflaging: an object dressed with such cloaks s...
We employ the analytical solutions for the spatial transformation of the electromagnetic fields to ...
The aim of this Communication is to investigate and demonstrate the possibility to overcome the fund...
We present a semiclassical description of non-magnetic cloaking. The semiclassical result is confirm...
In this contribution, the fundamental bounds that apply to low-scattering antennas are discussed and...
The absence of sources in complete background domains causes the non-scattering property of such sce...
An analytical approach for controlling the zeros of a scattering event (i.e., cloaking) is given, su...
"In this Chapter, we review the theoretical analysis and the design principles of electromagnetic cl...
The synthesis of non-magnetic 2D dielectric cloaks as proper solutions of an inverse scattering prob...
In this contribution, we present our latest results concerning the design of microwave mantle cloaki...
The purpose of this paper is to explore electromagnetic cloaking by addressing the following questio...
Cloaking devices designed using the coordinate transform approach were shown to be realizable, at le...
We discuss the global scattering response of invisibility cloaks over the entire electromagnetic spe...
In this paper, the synthesis of dielectric cloaks is solved in terms of an inverse scattering proble...
We experimentally demonstrated an alternative approach of invisibility cloaking that can combine tec...
This paper describes some non-singular cloaks for camouflaging: an object dressed with such cloaks s...
We employ the analytical solutions for the spatial transformation of the electromagnetic fields to ...
The aim of this Communication is to investigate and demonstrate the possibility to overcome the fund...
We present a semiclassical description of non-magnetic cloaking. The semiclassical result is confirm...
In this contribution, the fundamental bounds that apply to low-scattering antennas are discussed and...