Toroidal multipoles are the terms missing in the standard multipole expansion; they are usually overlooked due to their relatively weak coupling to the electromagnetic fields. Here, we propose and theoretically study all-dielectric metamaterials of a special class that represent a simple electromagnetic system supporting toroidal dipolar excitations in the THz part of the spectrum. We show that resonant transmission and reflection of such metamaterials is dominated by toroidal dipole scattering, the neglect of which would result in a misunderstanding interpretation of the metamaterials’ macroscopic response. Because of the unique field configuration of the toroidal mode, the proposed metamaterials could serve as a platform for sensing or en...
Toroidal modes are unique type of electromagnetic excitations that have characteristic features diff...
We demonstrate that the toroidal dipolar response can be realized in the optical regime by designing...
Toroidal multipoles are the subject of growing interest because of their unusual electromagnetic pro...
Toroidal multipoles are the terms missing in the standard multipole expansion; they are usually over...
Toroidal multipoles are fundamental electromagnetic excitations different from those associated with...
Toroidal dipoles are usually masked by other stronger effects of classical electric and magnetic mul...
The toroidal dipole is a peculiar electromagnetic excitation that can not be presented in terms of s...
We present a new class of artificially engineered electromagnetic materials (so-called metamaterials...
The toroidal dipole is a localized electromagnetic excitation independent from the familiar magnetic...
The toroidal dipole is a localized electromagnetic excitation independent from the familiar magnetic...
Localized electromagnetic excitation in the form of toroidal dipoles has recently been observed in m...
The study of toroidal dipole modes has attracted a growing attention due to the specific properties ...
We present the first design of a photonic metamaterial demonstrating dominant toroidal dipolar respo...
Optical activity is a phenomenon ubiquitous across natural and artificial structures and is generall...
A toroidal dipole is a new class of electromagnetic excitations and are different from traditional e...
Toroidal modes are unique type of electromagnetic excitations that have characteristic features diff...
We demonstrate that the toroidal dipolar response can be realized in the optical regime by designing...
Toroidal multipoles are the subject of growing interest because of their unusual electromagnetic pro...
Toroidal multipoles are the terms missing in the standard multipole expansion; they are usually over...
Toroidal multipoles are fundamental electromagnetic excitations different from those associated with...
Toroidal dipoles are usually masked by other stronger effects of classical electric and magnetic mul...
The toroidal dipole is a peculiar electromagnetic excitation that can not be presented in terms of s...
We present a new class of artificially engineered electromagnetic materials (so-called metamaterials...
The toroidal dipole is a localized electromagnetic excitation independent from the familiar magnetic...
The toroidal dipole is a localized electromagnetic excitation independent from the familiar magnetic...
Localized electromagnetic excitation in the form of toroidal dipoles has recently been observed in m...
The study of toroidal dipole modes has attracted a growing attention due to the specific properties ...
We present the first design of a photonic metamaterial demonstrating dominant toroidal dipolar respo...
Optical activity is a phenomenon ubiquitous across natural and artificial structures and is generall...
A toroidal dipole is a new class of electromagnetic excitations and are different from traditional e...
Toroidal modes are unique type of electromagnetic excitations that have characteristic features diff...
We demonstrate that the toroidal dipolar response can be realized in the optical regime by designing...
Toroidal multipoles are the subject of growing interest because of their unusual electromagnetic pro...