It is shown that a new type of metamaterial, a 3D-array of toroidal solenoids, displays a significant toroidal response that can be readily measured. This is in sharp contrast to materials that exist in nature, where the toroidal component is weak and hardly measurable. The existence of an optimal configuration, maximizing the interaction with an external electromagnetic field, is demonstrated. In addition, it is found that a characteristic feature of the magnetic toroidal response is its strong dependence on the background dielectric permittivity of the host material, which suggests possible applications. Negative refraction and backward waves exist in a composite toroidal metamaterial, consisting of an array of wires and an array of toroi...
Toroidal dipoles are usually masked by other stronger effects of classical electric and magnetic mul...
Natural toroidal molecules, such as biomolecules and proteins, possess toroidal dipole moments that ...
The toroidal dipole is a peculiar electromagnetic excitation that can not be presented in terms of s...
doi:10.1088/1367-2630/9/9/324 Abstract. It is shown that a new type of metamaterial, a 3D-array of t...
We present a new class of artificially engineered electromagnetic materials (so-called metamaterials...
We report the development of a new type of metamaterials supporting resonantly induced toroidal mome...
We report on the development of toroidal metamaterials operating in the near-to-far IR spectral rang...
A conductive meta-atom of toroidal topology is studied both theoretically and experimentally, demons...
Toroidal multipoles are the subject of growing interest because of their unusual electromagnetic pro...
Toroidal multipoles are fundamental electromagnetic excitations different from those associated with...
Experiments with metamaterials can resolve some intriguing controversies of toroidal electrodynamics...
Toroidal multipoles are the terms missing in the standard multipole expansion; they are usually over...
A toroidal dipole is a new class of electromagnetic excitations and are different from traditional e...
We demonstrate that the toroidal dipolar response can be realized in the optical regime by designing...
Toroidal modes are unique type of electromagnetic excitations that have characteristic features diff...
Toroidal dipoles are usually masked by other stronger effects of classical electric and magnetic mul...
Natural toroidal molecules, such as biomolecules and proteins, possess toroidal dipole moments that ...
The toroidal dipole is a peculiar electromagnetic excitation that can not be presented in terms of s...
doi:10.1088/1367-2630/9/9/324 Abstract. It is shown that a new type of metamaterial, a 3D-array of t...
We present a new class of artificially engineered electromagnetic materials (so-called metamaterials...
We report the development of a new type of metamaterials supporting resonantly induced toroidal mome...
We report on the development of toroidal metamaterials operating in the near-to-far IR spectral rang...
A conductive meta-atom of toroidal topology is studied both theoretically and experimentally, demons...
Toroidal multipoles are the subject of growing interest because of their unusual electromagnetic pro...
Toroidal multipoles are fundamental electromagnetic excitations different from those associated with...
Experiments with metamaterials can resolve some intriguing controversies of toroidal electrodynamics...
Toroidal multipoles are the terms missing in the standard multipole expansion; they are usually over...
A toroidal dipole is a new class of electromagnetic excitations and are different from traditional e...
We demonstrate that the toroidal dipolar response can be realized in the optical regime by designing...
Toroidal modes are unique type of electromagnetic excitations that have characteristic features diff...
Toroidal dipoles are usually masked by other stronger effects of classical electric and magnetic mul...
Natural toroidal molecules, such as biomolecules and proteins, possess toroidal dipole moments that ...
The toroidal dipole is a peculiar electromagnetic excitation that can not be presented in terms of s...