At optical frequencies due to the small value of the magnetic permeability of natural materials, the magnetic effects are week. To this end, the natural dielectric materials are unemployable for practical magnetic applications in optics. We have shown that it is possible to induce the intense magnetic hot spots in a Janus dielectric mesoscale particle. The basic idea of the Janus particle based on a combination of the effects of a photonic jet, whispering gallery waves and the concept of solid immersion. Simulations show that H^2/E^2 contrast maybe more 10 and maximal magnetic field intensity enhancement is more than 1000 for a wavelength-scaled particle with refractive index less than 2.Comment: 11 pages, 9 figure
We theoretically study the forward and backward plane wave illuminations of hemicylindrical dielectr...
Control of light by an external magnetic field is one of the important methods for modulation of its...
Plasmonic nanoparticles have been the focus of much interest in recent years, especially core-shell ...
The development of all-dielectric structures with high magnetic response at optical frequencies has ...
The weakness of magnetic effects at optical frequencies is directly related to the lack of symmetry ...
We estimate the electromagnetic fields generated by a cluster of dielectric nanoparticles embedded i...
We show that weakly dissipating dielectric spheres made of materials such as glass, quartz, etc. can...
We present a detailed analytical theory for the plasmonic nanoring configuration first proposed by A...
International audienceMagnetic light and matter interactions are generally too weak to be detected, ...
Active nanophotonics can be realized by controlling the optical properties of materials with externa...
Magnetic field control of light is among the most intriguing methods for modulation of light intensi...
The possibility to develop nanosystems with appreciable magnetic response at optical frequencies has...
In this manuscript, we present high spatial resolution focusing of electromagnetic waves at telecomm...
The magneto-optical activity, namely the polarization conversion capabilities of high- index, non-ab...
Magnetic field control of light is among the most intriguing methods for modulation of light intensi...
We theoretically study the forward and backward plane wave illuminations of hemicylindrical dielectr...
Control of light by an external magnetic field is one of the important methods for modulation of its...
Plasmonic nanoparticles have been the focus of much interest in recent years, especially core-shell ...
The development of all-dielectric structures with high magnetic response at optical frequencies has ...
The weakness of magnetic effects at optical frequencies is directly related to the lack of symmetry ...
We estimate the electromagnetic fields generated by a cluster of dielectric nanoparticles embedded i...
We show that weakly dissipating dielectric spheres made of materials such as glass, quartz, etc. can...
We present a detailed analytical theory for the plasmonic nanoring configuration first proposed by A...
International audienceMagnetic light and matter interactions are generally too weak to be detected, ...
Active nanophotonics can be realized by controlling the optical properties of materials with externa...
Magnetic field control of light is among the most intriguing methods for modulation of light intensi...
The possibility to develop nanosystems with appreciable magnetic response at optical frequencies has...
In this manuscript, we present high spatial resolution focusing of electromagnetic waves at telecomm...
The magneto-optical activity, namely the polarization conversion capabilities of high- index, non-ab...
Magnetic field control of light is among the most intriguing methods for modulation of light intensi...
We theoretically study the forward and backward plane wave illuminations of hemicylindrical dielectr...
Control of light by an external magnetic field is one of the important methods for modulation of its...
Plasmonic nanoparticles have been the focus of much interest in recent years, especially core-shell ...