In this work, theoretical findings on the common feature describing nonradiating sources is reported, based on equivalent sources from which it is possible to derive cloaking devices and anapole mode conditions. Starting from the differential form of Maxwell's Equations expressed in terms of equivalent electromagnetic sources, we derive two unique compact conditions. By specifing the nature of these passively induced or actively impressed current density sources in certain volumes and/or predefined surfaces, we derive theoretical results consistently with the literature about nonradiating particles, cloaking devices and anapole mode structures through peculiar destructive interactions between volumetric-volumetric, volumetric-surface and su...
Beginning with a straightforward formulation of electromagnetic 'cloaking' that reduces to a boundar...
Starting from the electric field integral equation (EFIE), it is shown how, for quasi-static cloakin...
The purpose of this paper is to explore electromagnetic cloaking by addressing the following questio...
In this paper, we demonstrate the relation between cloaking effect and its nonradiating state by con...
In this paper, we address nonradiating and cloaking problems exploiting the surface equivalence prin...
This work dedicated to novel cloaking technique, based on the multipolar dipole interaction. Thus, d...
Inspired by a general theorem on non-radiating sources demonstrated by Devaney and Wolf, a unified t...
The active cloak comprises a discrete set of multipole sources that destructively interfere with an ...
Emission of electromagnetic radiation by accelerated particles with electric, toroidal and anapole d...
Starting from Devaney-Wolf theorem on non-radiating sources, a general theory for invisible structur...
The absence of sources in complete background domains causes the non-scattering property of such sce...
Nonradiating current configurations attract attention of physicists for many years as possible model...
Starting from Devaney-Wolf theorem on non-radiating sources, a general theory for invisible structur...
We discuss methods for hiding of objects from detection by electromagnetic waves (cloaking), and als...
Abstract1 — In this communication, using a previously derived framework that we have called the equi...
Beginning with a straightforward formulation of electromagnetic 'cloaking' that reduces to a boundar...
Starting from the electric field integral equation (EFIE), it is shown how, for quasi-static cloakin...
The purpose of this paper is to explore electromagnetic cloaking by addressing the following questio...
In this paper, we demonstrate the relation between cloaking effect and its nonradiating state by con...
In this paper, we address nonradiating and cloaking problems exploiting the surface equivalence prin...
This work dedicated to novel cloaking technique, based on the multipolar dipole interaction. Thus, d...
Inspired by a general theorem on non-radiating sources demonstrated by Devaney and Wolf, a unified t...
The active cloak comprises a discrete set of multipole sources that destructively interfere with an ...
Emission of electromagnetic radiation by accelerated particles with electric, toroidal and anapole d...
Starting from Devaney-Wolf theorem on non-radiating sources, a general theory for invisible structur...
The absence of sources in complete background domains causes the non-scattering property of such sce...
Nonradiating current configurations attract attention of physicists for many years as possible model...
Starting from Devaney-Wolf theorem on non-radiating sources, a general theory for invisible structur...
We discuss methods for hiding of objects from detection by electromagnetic waves (cloaking), and als...
Abstract1 — In this communication, using a previously derived framework that we have called the equi...
Beginning with a straightforward formulation of electromagnetic 'cloaking' that reduces to a boundar...
Starting from the electric field integral equation (EFIE), it is shown how, for quasi-static cloakin...
The purpose of this paper is to explore electromagnetic cloaking by addressing the following questio...