A rigorous self-contained formulation for analyzing electromagnetic scattering by a grating of plasmonic nanorods (Ag) coupled to a magneto-optical slab is presented. Bi-substituted gadolinium iron garnet is considered as the magneto-optical material. We measured the dielectric permittivity of the iron garnet and utilized the experimental data in our analyses. The method uses the Lattice Sums technique combined with the generalized reflection matrix approach. Using the method, the spectral response in reflectance as well as near-field distributions at resonance wavelengths have been numerical studied. Special attention has been paid to the coupling mechanism between the plasmonic grating and the magneto-optical slab. Physical insight is giv...
We present here a generalization of the scattering-matrix approach for the description of the propag...
Surfaces that are nanopatterned, metallic, and magnetic can support surface plasmon resonances, prov...
Coupling magnetic materials to plasmonic structures provides a pathway to dramatically increase the ...
Purpose The purpose of this paper is to develop a rigorous self-contained formulation for analyzing ...
A self-contained formulation for analyzing electromagnetic scattering by a significant class of plan...
Plasmonics plays a key role in the development of advanced nanophotonics. Via the excitation of surf...
Tailoring the radiative properties of periodic micro/nanostructures can be used as an efficient way ...
The use of magneto-optical techniques to tune the plasmonic response of nanostructures—magnetoplasmo...
A ferromagnetic garnet, used as a magneto-optical (MO) material in magneto-photonic and magneto-plas...
At the interface between a metal and dielectric, it is possible for an electromagnetic wave to coupl...
AbstractThe non-reciprocity of magneto-optical reflection response by surface plasmon excitation in ...
Periodic arrays of nanorods can present a resonant response at specific geometric conditions. We use...
18 p.We present a simple design to achieve bianisotropy at visible wavelengths: an ultrathin plasmon...
In this paper we analyze the optical and transversal magnetooptical (MO) response of magnetoplasmoni...
This thesis presents an experimental and theoretical study of the optical properties for two distinc...
We present here a generalization of the scattering-matrix approach for the description of the propag...
Surfaces that are nanopatterned, metallic, and magnetic can support surface plasmon resonances, prov...
Coupling magnetic materials to plasmonic structures provides a pathway to dramatically increase the ...
Purpose The purpose of this paper is to develop a rigorous self-contained formulation for analyzing ...
A self-contained formulation for analyzing electromagnetic scattering by a significant class of plan...
Plasmonics plays a key role in the development of advanced nanophotonics. Via the excitation of surf...
Tailoring the radiative properties of periodic micro/nanostructures can be used as an efficient way ...
The use of magneto-optical techniques to tune the plasmonic response of nanostructures—magnetoplasmo...
A ferromagnetic garnet, used as a magneto-optical (MO) material in magneto-photonic and magneto-plas...
At the interface between a metal and dielectric, it is possible for an electromagnetic wave to coupl...
AbstractThe non-reciprocity of magneto-optical reflection response by surface plasmon excitation in ...
Periodic arrays of nanorods can present a resonant response at specific geometric conditions. We use...
18 p.We present a simple design to achieve bianisotropy at visible wavelengths: an ultrathin plasmon...
In this paper we analyze the optical and transversal magnetooptical (MO) response of magnetoplasmoni...
This thesis presents an experimental and theoretical study of the optical properties for two distinc...
We present here a generalization of the scattering-matrix approach for the description of the propag...
Surfaces that are nanopatterned, metallic, and magnetic can support surface plasmon resonances, prov...
Coupling magnetic materials to plasmonic structures provides a pathway to dramatically increase the ...