This work dedicated to novel cloaking technique, based on the multipolar dipole interaction. Thus, destructive interface between electric and toroidal dipole moments, known as anapole mode, underpins the cloaking effect in THz range and anticipated to find applications in nanophotonics and plasmonics
Resonant optical excitation of dielectric particles offers unique opportunities for future optical a...
A toroidal dipole is a new class of electromagnetic excitations and are different from traditional e...
Abstract—In this brief, a terahertz (THz) switch consisting of perfect conductor metamaterials is de...
In this paper, we demonstrate the relation between cloaking effect and its nonradiating state by con...
The toroidal dipole is a localized electromagnetic excitation independent from the familiar magnetic...
Nonradiating current configurations attract attention of physicists for many years as possible model...
We present the numerical, theoretical, and experimental study of a terahertz metasurface supporting ...
In this work, theoretical findings on the common feature describing nonradiating sources is reported...
We reveal that an isotropic, homogeneous, subwavelength particle with high refractive index can prod...
The toroidal dipole is a localized electromagnetic excitation independent from the familiar magnetic...
We investigate the peculiarities of light scattering from subwavelength particles made of high-refra...
Since the observations of the dynamic toroidal dipole and non-radiating anapole, the field of toroid...
Natural toroidal molecules, such as biomolecules and proteins, possess toroidal dipole moments that ...
The multipoles play a significant role in determining the resonant behavior of subwavelength resonat...
Artificial magnetic response is one of the recent research topics that is receiving significant atte...
Resonant optical excitation of dielectric particles offers unique opportunities for future optical a...
A toroidal dipole is a new class of electromagnetic excitations and are different from traditional e...
Abstract—In this brief, a terahertz (THz) switch consisting of perfect conductor metamaterials is de...
In this paper, we demonstrate the relation between cloaking effect and its nonradiating state by con...
The toroidal dipole is a localized electromagnetic excitation independent from the familiar magnetic...
Nonradiating current configurations attract attention of physicists for many years as possible model...
We present the numerical, theoretical, and experimental study of a terahertz metasurface supporting ...
In this work, theoretical findings on the common feature describing nonradiating sources is reported...
We reveal that an isotropic, homogeneous, subwavelength particle with high refractive index can prod...
The toroidal dipole is a localized electromagnetic excitation independent from the familiar magnetic...
We investigate the peculiarities of light scattering from subwavelength particles made of high-refra...
Since the observations of the dynamic toroidal dipole and non-radiating anapole, the field of toroid...
Natural toroidal molecules, such as biomolecules and proteins, possess toroidal dipole moments that ...
The multipoles play a significant role in determining the resonant behavior of subwavelength resonat...
Artificial magnetic response is one of the recent research topics that is receiving significant atte...
Resonant optical excitation of dielectric particles offers unique opportunities for future optical a...
A toroidal dipole is a new class of electromagnetic excitations and are different from traditional e...
Abstract—In this brief, a terahertz (THz) switch consisting of perfect conductor metamaterials is de...