A beam of linearly polarized light transmitted through magnetically biased graphene can have its axis of polarization rotated by several degrees after passing the graphene sheet. This large Faraday effect is due to the action of the magnetic field on graphene''s charge carriers. As deformations of the graphene membrane result in pseudomagnetic fields acting on the charge carriers, the effect of random mesoscopic corrugations (ripples) can be described as the exposure of graphene to a random pseudomagnetic field. We aim to clarify the interplay of these typically sample inherent fields with the external magnetic bias field and the resulting effect on the Faraday rotation. In principle, random gauge disorder can be identified from a combinati...
The aim of this work is to describe the electronic properties of graphene in a constant magnetic fie...
In this study, we address the electronic properties of conducting films constituted of an array of r...
The effect of graphene on the Faraday rotation (FR) in dielectrics/antiferromagnetic photonic crysta...
A beam of linearly polarized light transmitted through magnetically biased graphene can have its axi...
We study the electron/hole transport in puddle-disordered and rough graphene samples which are subje...
Faraday rotation is a fundamental property present in all nonreciprocal optical elements. In the THz...
We show that by enclosing graphene in an optical cavity, giant Faraday rotations in the infrared reg...
The rotation of the polarization of light after passing a medium in a magnetic field, discovered by ...
We study magneto-optical properties of monolayer graphene by means of quantum field theory methods i...
Resumen del trabajo presentado al Workshop on Analysis, Modeling, and Computation for Nanoscale Syst...
The phase coherent properties of electrons in low temperature graphene are measured and analyzed. I ...
A single graphene sheet, when subjected to a perpendicular static magnetic field, provides a Faraday...
In this thesis, the effect of circularly polarized light on a graphene sheet is explored. The funda...
Application of an in-plane magnetic field to rippled graphene will make the system be a plane with r...
We investigate spin transport in diffusive graphene nanoribbons with both clean and rough zigzag edg...
The aim of this work is to describe the electronic properties of graphene in a constant magnetic fie...
In this study, we address the electronic properties of conducting films constituted of an array of r...
The effect of graphene on the Faraday rotation (FR) in dielectrics/antiferromagnetic photonic crysta...
A beam of linearly polarized light transmitted through magnetically biased graphene can have its axi...
We study the electron/hole transport in puddle-disordered and rough graphene samples which are subje...
Faraday rotation is a fundamental property present in all nonreciprocal optical elements. In the THz...
We show that by enclosing graphene in an optical cavity, giant Faraday rotations in the infrared reg...
The rotation of the polarization of light after passing a medium in a magnetic field, discovered by ...
We study magneto-optical properties of monolayer graphene by means of quantum field theory methods i...
Resumen del trabajo presentado al Workshop on Analysis, Modeling, and Computation for Nanoscale Syst...
The phase coherent properties of electrons in low temperature graphene are measured and analyzed. I ...
A single graphene sheet, when subjected to a perpendicular static magnetic field, provides a Faraday...
In this thesis, the effect of circularly polarized light on a graphene sheet is explored. The funda...
Application of an in-plane magnetic field to rippled graphene will make the system be a plane with r...
We investigate spin transport in diffusive graphene nanoribbons with both clean and rough zigzag edg...
The aim of this work is to describe the electronic properties of graphene in a constant magnetic fie...
In this study, we address the electronic properties of conducting films constituted of an array of r...
The effect of graphene on the Faraday rotation (FR) in dielectrics/antiferromagnetic photonic crysta...