The complete dynamic multipole expansion of electromagnetic sources contains more types of multipole terms than is conventionally perceived. The toroidal multipoles are one of the examples of such contributions that have been widely studied in recent years. Here we inspect more closely the other type of commonly overlooked terms known as the mean-square radii. In particular, we discuss both quantitative and qualitative aspects of the mean-square radii and provide a general geometrical framework for their visualization. We also consider the role of the mean-square radii in expanding the family of nontrivial nonradiating electromagnetic sources.</p
There are three radii associated with the electron: The Bohr radius, Compton radius and Classical ra...
CERN (Conseil Européen pour la Recherche Nucléaire) is recognized worldwide as the main research lab...
Emission of electromagnetic radiation by accelerated particles with electric, toroidal and anapole d...
Multipole expansion is one of the main analytical tools of the modern theoretical physics. In electr...
We analyze the dynamic toroidal multipoles and prove that they do not have an independent physical m...
Multipole expansions are an essential analysis tool in the foundations of the descriptions of the el...
A new method is developed for expanding the electromagnetic field of radiating charges and currents ...
Electromagnetic anapoles are nonradiating oscillations of electric charge. They are known to be form...
The toroidal dipole is a localized electromagnetic excitation, distinct from the magnetic and electr...
The toroidal dipole is a localized electromagnetic excitation, distinct from the magnetic and electr...
Pinkwart M, Schwarz D. Multipole vectors of completely random microwave skies for l <= 50. PHYSIC...
Data used in Figure 5 (“Focused Doughnut” (FD) pulses) in Papasimakis, N., Fedotov, V.A....
Compact general formulae for the energy, momentum and angular momentum radiated by confined systems ...
The focus of this dissertation work is on the development of a unified set of rules and guidelines f...
We introduce a technique to decompose the scattered near held of two-dimensional arbitrary metaatoms...
There are three radii associated with the electron: The Bohr radius, Compton radius and Classical ra...
CERN (Conseil Européen pour la Recherche Nucléaire) is recognized worldwide as the main research lab...
Emission of electromagnetic radiation by accelerated particles with electric, toroidal and anapole d...
Multipole expansion is one of the main analytical tools of the modern theoretical physics. In electr...
We analyze the dynamic toroidal multipoles and prove that they do not have an independent physical m...
Multipole expansions are an essential analysis tool in the foundations of the descriptions of the el...
A new method is developed for expanding the electromagnetic field of radiating charges and currents ...
Electromagnetic anapoles are nonradiating oscillations of electric charge. They are known to be form...
The toroidal dipole is a localized electromagnetic excitation, distinct from the magnetic and electr...
The toroidal dipole is a localized electromagnetic excitation, distinct from the magnetic and electr...
Pinkwart M, Schwarz D. Multipole vectors of completely random microwave skies for l <= 50. PHYSIC...
Data used in Figure 5 (“Focused Doughnut” (FD) pulses) in Papasimakis, N., Fedotov, V.A....
Compact general formulae for the energy, momentum and angular momentum radiated by confined systems ...
The focus of this dissertation work is on the development of a unified set of rules and guidelines f...
We introduce a technique to decompose the scattered near held of two-dimensional arbitrary metaatoms...
There are three radii associated with the electron: The Bohr radius, Compton radius and Classical ra...
CERN (Conseil Européen pour la Recherche Nucléaire) is recognized worldwide as the main research lab...
Emission of electromagnetic radiation by accelerated particles with electric, toroidal and anapole d...