We analyze the dynamic toroidal multipoles and prove that they do not have an independent physical meaning with respect to their interaction with electromagnetic waves. We analytically show how the split into electric and toroidal parts causes the appearance of non-radiative components in each of the two parts. These non-radiative components, which cancel each other when both parts are summed, preclude the separate determination of each part by means of measurements of the radiation from the source or of its coupling to external electromagnetic waves. In other words, there is no toroidal radiation or independent toroidal electromagnetic coupling. The formal meaning of the toroidal multipoles is clear in our derivations. They are the higher ...
A toroidal dipole represents an often overlooked electromagnetic excitation distinct from the standa...
Electromagnetic anapoles are nonradiating oscillations of electric charge. They are known to be form...
Optical properties of natural or designed materials are determined by the electromagnetic multipole ...
Multipole expansion is one of the main analytical tools of the modern theoretical physics. In electr...
The toroidal dipole is a localized electromagnetic excitation, distinct from the magnetic and electr...
International audienceDynamic toroidal dipoles, a distinguished class of fundamental electromagnetic...
Data used in Figure 5 (“Focused Doughnut” (FD) pulses) in Papasimakis, N., Fedotov, V.A....
Toroidal multipoles are the terms missing in the standard multipole expansion; they are usually over...
We present a new class of artificially engineered electromagnetic materials (so-called metamaterials...
The toroidal dipole is a localized electromagnetic excitation, distinct from the magnetic and electr...
Toroidal multipoles are fundamental electromagnetic excitations different from those associated with...
The complete dynamic multipole expansion of electromagnetic sources contains more types of multipole...
: The continuous search for metamaterials with special properties, suitable for new technological ap...
We have investigated two models of the third elementary electromagnetic dipole, known as the toroida...
Optical activity is a phenomenon ubiquitous across natural and artificial structures and is generall...
A toroidal dipole represents an often overlooked electromagnetic excitation distinct from the standa...
Electromagnetic anapoles are nonradiating oscillations of electric charge. They are known to be form...
Optical properties of natural or designed materials are determined by the electromagnetic multipole ...
Multipole expansion is one of the main analytical tools of the modern theoretical physics. In electr...
The toroidal dipole is a localized electromagnetic excitation, distinct from the magnetic and electr...
International audienceDynamic toroidal dipoles, a distinguished class of fundamental electromagnetic...
Data used in Figure 5 (“Focused Doughnut” (FD) pulses) in Papasimakis, N., Fedotov, V.A....
Toroidal multipoles are the terms missing in the standard multipole expansion; they are usually over...
We present a new class of artificially engineered electromagnetic materials (so-called metamaterials...
The toroidal dipole is a localized electromagnetic excitation, distinct from the magnetic and electr...
Toroidal multipoles are fundamental electromagnetic excitations different from those associated with...
The complete dynamic multipole expansion of electromagnetic sources contains more types of multipole...
: The continuous search for metamaterials with special properties, suitable for new technological ap...
We have investigated two models of the third elementary electromagnetic dipole, known as the toroida...
Optical activity is a phenomenon ubiquitous across natural and artificial structures and is generall...
A toroidal dipole represents an often overlooked electromagnetic excitation distinct from the standa...
Electromagnetic anapoles are nonradiating oscillations of electric charge. They are known to be form...
Optical properties of natural or designed materials are determined by the electromagnetic multipole ...