Toroidal dipole is a localized electromagnetic excitation that plays an important role in determining the fundamental properties of matter due to its unique potential to excite nearly nonradiating charge–current configuration. Toroidal dipoles are recently discovered in metamaterial systems where it is shown that these dipoles manifest as poloidal currents on the surface of a torus and are distinctly different from the traditional electric and magnetic dipoles. Here, an active toroidal metamaterial switch is demonstrated in which the toroidal dipole can be dynamically switched to the fundamental electric dipole or magnetic dipole, through selective inclusion of active elements in a hybrid metamolecule design. Active switching of nonradiatin...
Toroidal modes are unique type of electromagnetic excitations that have characteristic features diff...
We show how the elusive toroidal dipole moment appears as a radiative excitation eigenmode in a meta...
The study of toroidal dipole modes has attracted a growing attention due to the specific properties ...
Toroidal dipole is a localized electromagnetic excitation that plays an important role in determinin...
The toroidal dipole is a localized electromagnetic excitation, distinct from the magnetic and electr...
A toroidal dipole is a new class of electromagnetic excitations and are different from traditional e...
We present a new class of artificially engineered electromagnetic materials (so-called metamaterials...
Optical activity is a phenomenon ubiquitous across natural and artificial structures and is generall...
The toroidal dipole is a localized electromagnetic excitation, distinct from the magnetic and electr...
Natural toroidal molecules, such as biomolecules and proteins, possess toroidal dipole moments that ...
Toroidal multipoles are fundamental electromagnetic excitations different from those associated with...
The toroidal dipole is a peculiar electromagnetic excitation that can not be presented in terms of s...
We report the development of a new type of metamaterials supporting resonantly induced toroidal mome...
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...
Toroidal modes are unique type of electromagnetic excitations that have characteristic features diff...
We show how the elusive toroidal dipole moment appears as a radiative excitation eigenmode in a meta...
The study of toroidal dipole modes has attracted a growing attention due to the specific properties ...
Toroidal dipole is a localized electromagnetic excitation that plays an important role in determinin...
The toroidal dipole is a localized electromagnetic excitation, distinct from the magnetic and electr...
A toroidal dipole is a new class of electromagnetic excitations and are different from traditional e...
We present a new class of artificially engineered electromagnetic materials (so-called metamaterials...
Optical activity is a phenomenon ubiquitous across natural and artificial structures and is generall...
The toroidal dipole is a localized electromagnetic excitation, distinct from the magnetic and electr...
Natural toroidal molecules, such as biomolecules and proteins, possess toroidal dipole moments that ...
Toroidal multipoles are fundamental electromagnetic excitations different from those associated with...
The toroidal dipole is a peculiar electromagnetic excitation that can not be presented in terms of s...
We report the development of a new type of metamaterials supporting resonantly induced toroidal mome...
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...
Toroidal modes are unique type of electromagnetic excitations that have characteristic features diff...
We show how the elusive toroidal dipole moment appears as a radiative excitation eigenmode in a meta...
The study of toroidal dipole modes has attracted a growing attention due to the specific properties ...