In this paper, we theoretically consider the magneto-optical spin Hall effect of light (MOSHEL) in a graphene–gold heterojunction structure at terahertz frequencies, and determine the maximum value of the transverse shift of the spin Hall effect of light (SHEL) in the designed structure by varying the terahertz frequency, the thickness of the metal layer, the Fermi energy level of the graphene, and the magnetic induction density. When the terahertz frequency was 1.2 THz, the metal layer thickness 50 nm, the Fermi level 0.2 eV, and the magnetic induction density B was 10 T, the SHEL shifts of left-handed circularly polarized (LHCP) and right-handed circularly polarized (RHCP) components was greatest at the critical angle (58°), with as value...
At the terahertz spectrum, the 2D material graphene has diagonal and Hall conductivities in the pres...
We demonstrate that the optical response of graphene nanoribbons in the terahertz to far-infrared re...
We exploit inter-layer radiative transitions to provide gains to amplify terahertz waves in graphene...
The influence of a magnetic field on Landau levels (LLs) in graphene-based devices is described via ...
In the present article we numerically investigated the magneto-optical behaviour of a sub-wavelength...
When high-frequency radiation is incident upon graphene subjected to a perpendicular magnetic field,...
Light-induced ultrafast dynamics in two-dimensional (2D) magnetic systems demonstrate substantial ad...
The magnetic circular dichroism and the Faraday rotation are the fundamental phenomena of great prac...
9 pags., 6 figs.We propose an experimental realization of the spin Hall effect in graphene by illumi...
Single-layer graphene absorbs a small fraction of incident terahertz waves by intraband transition o...
Terahertz (THz) technology has attracted enormous interest with conceivable applications ranging fro...
By placing a material in close vicinity of a resonant optical element, its intrinsic optical respons...
In the presence of strong magnetic fields the electronic band structure of graphene drastically chan...
We present a quantitative analysis on the effect of the spin-orbit interaction in the optical absorp...
By theoretically considering a dielectric slab containing graphene, we investigate the eff...
At the terahertz spectrum, the 2D material graphene has diagonal and Hall conductivities in the pres...
We demonstrate that the optical response of graphene nanoribbons in the terahertz to far-infrared re...
We exploit inter-layer radiative transitions to provide gains to amplify terahertz waves in graphene...
The influence of a magnetic field on Landau levels (LLs) in graphene-based devices is described via ...
In the present article we numerically investigated the magneto-optical behaviour of a sub-wavelength...
When high-frequency radiation is incident upon graphene subjected to a perpendicular magnetic field,...
Light-induced ultrafast dynamics in two-dimensional (2D) magnetic systems demonstrate substantial ad...
The magnetic circular dichroism and the Faraday rotation are the fundamental phenomena of great prac...
9 pags., 6 figs.We propose an experimental realization of the spin Hall effect in graphene by illumi...
Single-layer graphene absorbs a small fraction of incident terahertz waves by intraband transition o...
Terahertz (THz) technology has attracted enormous interest with conceivable applications ranging fro...
By placing a material in close vicinity of a resonant optical element, its intrinsic optical respons...
In the presence of strong magnetic fields the electronic band structure of graphene drastically chan...
We present a quantitative analysis on the effect of the spin-orbit interaction in the optical absorp...
By theoretically considering a dielectric slab containing graphene, we investigate the eff...
At the terahertz spectrum, the 2D material graphene has diagonal and Hall conductivities in the pres...
We demonstrate that the optical response of graphene nanoribbons in the terahertz to far-infrared re...
We exploit inter-layer radiative transitions to provide gains to amplify terahertz waves in graphene...