The two-dimensional carbon allotrope graphene has recently attracted a lot of attention from researchers in the disciplines of Lattice Field Theory, Lattice QCD and Monte Carlo calculations. This interest has been prompted by several remarkable properties of the conduction electrons in graphene. For instance, the conical band structure of graphene at low energies is strongly reminiscent of relativistic Dirac fermions. Also, due the low Fermi velocity of vF ≃ c/300, where c is the speed of light in vacuum, the physics of the conduction electrons in graphene is qualitatively similar to Quantum Electrodynamics in a strongly coupled regime. In turn, this opens up the prospect of the experimental realization of gapped, strongly correlated states...
Two-dimensional carbon, or graphene, is a semimetal that presents unusual low-energy electronic exci...
Die vorliegende Dissertation befasst sich mit der theoretischen Beschreibung von Nichtgleichgewichts...
Graphene, a single atom thick plane of graphite, is a novel two-dimensional electron system in which...
Since its discovery in 2004, graphene, a two-dimensional hexagonal carbon allotrope, has generated g...
We discuss the Monte Carlo method of simulating lattice field theories as a means of studying the lo...
Graphenes transport properties have been extensively studied in the 10 years since its discovery in ...
Graphene, a two-dimensional carbon allotrope, has interesting electronic properties resulting from i...
Graphene, a two-dimensional carbon allotrope, has interesting electronic properties resulting from i...
The conduction electrons in graphene promise new opportunities to access the region of strong many-b...
The conduction electrons in graphene promise new opportunities to access the region of strong many-b...
In 2004 graphene, a monolayer of carbon atoms, has been isolated as the first real two-dimensional s...
In this report, the electronic properties of graphene were studied with OpenMX, a software package f...
The conduction electrons in graphene promise new opportunities to access the region of strong many-b...
This thesis is devoted to the computational study of the electronic and transport properties of mono...
Graphene has been actively researched because its low energy electronic Hamiltonian is the relativis...
Two-dimensional carbon, or graphene, is a semimetal that presents unusual low-energy electronic exci...
Die vorliegende Dissertation befasst sich mit der theoretischen Beschreibung von Nichtgleichgewichts...
Graphene, a single atom thick plane of graphite, is a novel two-dimensional electron system in which...
Since its discovery in 2004, graphene, a two-dimensional hexagonal carbon allotrope, has generated g...
We discuss the Monte Carlo method of simulating lattice field theories as a means of studying the lo...
Graphenes transport properties have been extensively studied in the 10 years since its discovery in ...
Graphene, a two-dimensional carbon allotrope, has interesting electronic properties resulting from i...
Graphene, a two-dimensional carbon allotrope, has interesting electronic properties resulting from i...
The conduction electrons in graphene promise new opportunities to access the region of strong many-b...
The conduction electrons in graphene promise new opportunities to access the region of strong many-b...
In 2004 graphene, a monolayer of carbon atoms, has been isolated as the first real two-dimensional s...
In this report, the electronic properties of graphene were studied with OpenMX, a software package f...
The conduction electrons in graphene promise new opportunities to access the region of strong many-b...
This thesis is devoted to the computational study of the electronic and transport properties of mono...
Graphene has been actively researched because its low energy electronic Hamiltonian is the relativis...
Two-dimensional carbon, or graphene, is a semimetal that presents unusual low-energy electronic exci...
Die vorliegende Dissertation befasst sich mit der theoretischen Beschreibung von Nichtgleichgewichts...
Graphene, a single atom thick plane of graphite, is a novel two-dimensional electron system in which...