The magnetic circular dichroism and the Faraday rotation are the fundamental phenomena of great practical importance arising from the breaking of the time reversal symmetry by a magnetic field. In most materials, the strength and the sign of these effects can be only controlled by the field value and its orientation. Furthermore, the terahertz range is lacking materials having the ability to affect the polarization state of the light in a non-reciprocal manner. Here we demonstrate, using broadband terahertz magneto-electro-optical spectroscopy, that in graphene both the magnetic circular dichroism and the Faraday rotation can be modulated in intensity, tuned in frequency and, importantly, inverted using only electrostatic doping at a fixed ...
Terahertz field induced photocurrents in graphene were studied experimentally and by microscopic mod...
We demonstrate that the optical response of graphene nanoribbons in the terahertz to far-infrared re...
We demonstrate that giant Faraday rotation in graphene in the terahertz range due to the cyclotron r...
The magnetic circular dichroism and the Faraday rotation are the fundamental phenomena of great prac...
Faraday rotation is a fundamental property present in all nonreciprocal optical elements. In the THz...
Strong circularly polarized excitation opens up the possibility to generate and control effective ma...
We study the interaction between polarized terahertz (THz) radiation and micro-structured large-area...
In the present article we numerically investigated the magneto-optical behaviour of a sub-wavelength...
We consider a graphene sheet encapsulated in a two-dimensional (2D) metallic grating and a substrat...
Faraday rotation is a fundamental magneto-optical phenomenon used in various optical control and mag...
When high-frequency radiation is incident upon graphene subjected to a perpendicular magnetic field,...
A single graphene sheet, when subjected to a perpendicular static magnetic field, provides a Faraday...
In this paper, we theoretically consider the magneto-optical spin Hall effect of light (MOSHEL) in a...
Active control of polarization states of electromagnetic waves is highly desirable because of its di...
We demonstrate an electrically tunable polarizer for terahertz (THz) frequency electromagnetic waves...
Terahertz field induced photocurrents in graphene were studied experimentally and by microscopic mod...
We demonstrate that the optical response of graphene nanoribbons in the terahertz to far-infrared re...
We demonstrate that giant Faraday rotation in graphene in the terahertz range due to the cyclotron r...
The magnetic circular dichroism and the Faraday rotation are the fundamental phenomena of great prac...
Faraday rotation is a fundamental property present in all nonreciprocal optical elements. In the THz...
Strong circularly polarized excitation opens up the possibility to generate and control effective ma...
We study the interaction between polarized terahertz (THz) radiation and micro-structured large-area...
In the present article we numerically investigated the magneto-optical behaviour of a sub-wavelength...
We consider a graphene sheet encapsulated in a two-dimensional (2D) metallic grating and a substrat...
Faraday rotation is a fundamental magneto-optical phenomenon used in various optical control and mag...
When high-frequency radiation is incident upon graphene subjected to a perpendicular magnetic field,...
A single graphene sheet, when subjected to a perpendicular static magnetic field, provides a Faraday...
In this paper, we theoretically consider the magneto-optical spin Hall effect of light (MOSHEL) in a...
Active control of polarization states of electromagnetic waves is highly desirable because of its di...
We demonstrate an electrically tunable polarizer for terahertz (THz) frequency electromagnetic waves...
Terahertz field induced photocurrents in graphene were studied experimentally and by microscopic mod...
We demonstrate that the optical response of graphene nanoribbons in the terahertz to far-infrared re...
We demonstrate that giant Faraday rotation in graphene in the terahertz range due to the cyclotron r...