Weshow that, on general theoretical grounds, transmission of light in graphene always presents a non-vanishing minimum value independently of any material and physical condition, the transmission coefficient being higher in the presence of a substrate, and getting increasing when QED corrections higher than α come into play. Explicit numerical calculations for typical cases are carried out when an external magnetic field is applied to the sample, showing that, in epitaxial graphene, a threshold effect exists leading to a non-trivial minimum transmission, for a non-vanishing light frequency, only for field values larger than a critical one, both in the large and in the intermediate chemical potential regime. Such a threshold effect manifests...
The terahertz photoconductivity of epitaxial graphene grown on a SiC substrate is studied in magneti...
Transport of massless Dirac fermions in graphene monolayers is analysed in the presence of a combina...
We demonstrate that the optical response of graphene nanoribbons in the terahertz to far-infrared re...
Solving the Schrödinger problem for electrons in graphene subjected to both a stationary magnetic fi...
Resumen del trabajo presentado al Workshop on Analysis, Modeling, and Computation for Nanoscale Syst...
We demonstrated theoretically that the renormalization of the electron energy spectrum near the Dira...
The influence of a magnetic field on Landau levels (LLs) in graphene-based devices is described via ...
We investigate the spontaneous emission rate of a two-level quantum emitter near a graphene-coated s...
We study magneto-optical properties of monolayer graphene by means of quantum field theory...
In this thesis, the effect of circularly polarized light on a graphene sheet is explored. The funda...
The terahertz photoconductivity in epitaxial graphene grown on SiC substrates is investigated in a m...
This thesis focuses on the transport properties of graphene, a new emerging atomically thin, two-dim...
The rotation of the polarization of light after passing a medium in a magnetic field, discovered by ...
We investigate the effect of strain on electrical transport across a delta-function magnetic barrier...
The optical conductivity of graphene in quantizing magnetic fields is studied. Both dynamical conduc...
The terahertz photoconductivity of epitaxial graphene grown on a SiC substrate is studied in magneti...
Transport of massless Dirac fermions in graphene monolayers is analysed in the presence of a combina...
We demonstrate that the optical response of graphene nanoribbons in the terahertz to far-infrared re...
Solving the Schrödinger problem for electrons in graphene subjected to both a stationary magnetic fi...
Resumen del trabajo presentado al Workshop on Analysis, Modeling, and Computation for Nanoscale Syst...
We demonstrated theoretically that the renormalization of the electron energy spectrum near the Dira...
The influence of a magnetic field on Landau levels (LLs) in graphene-based devices is described via ...
We investigate the spontaneous emission rate of a two-level quantum emitter near a graphene-coated s...
We study magneto-optical properties of monolayer graphene by means of quantum field theory...
In this thesis, the effect of circularly polarized light on a graphene sheet is explored. The funda...
The terahertz photoconductivity in epitaxial graphene grown on SiC substrates is investigated in a m...
This thesis focuses on the transport properties of graphene, a new emerging atomically thin, two-dim...
The rotation of the polarization of light after passing a medium in a magnetic field, discovered by ...
We investigate the effect of strain on electrical transport across a delta-function magnetic barrier...
The optical conductivity of graphene in quantizing magnetic fields is studied. Both dynamical conduc...
The terahertz photoconductivity of epitaxial graphene grown on a SiC substrate is studied in magneti...
Transport of massless Dirac fermions in graphene monolayers is analysed in the presence of a combina...
We demonstrate that the optical response of graphene nanoribbons in the terahertz to far-infrared re...