Graphene is a novel material that features a quasi-relativistic linear energy dispersion with the quantum mechanical motion of electrons obeying the massless Dirac equation. In this dissertation, we study the many-body effects in graphene due to Coulomb interaction and electron-phonon interaction. Interaction effects can appear in both transport and electronic properties. For many-body effects in transport, we formulate the theory for Coulomb drag in double-layer graphene. We calculate the drag resistivity and study its dependence on temperature, density and interlayer spacing, finding zero drag if one of the graphene layers is intrinsic (i.e., undoped) and a non-zero drag exhibiting a similar behavior to regular bilayer drag if both graphe...
In this thesis the properties of graphene are studied via the various aspects of the quantum transpo...
We have determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
We have determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
Item does not contain fulltextIn this chapter, we discuss how to build effective many-body models st...
The effectively massless, relativistic behaviour of graphene's charge carriers—known as Dirac fermio...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.Cataloged from PDF ve...
The prototypical exciton model of two interacting Dirac particles in graphene was analysed by Sabio...
This work explores many-body effects in novel nanostructures specifically on transport and optical p...
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...
Single-layer graphene has been widely researched in recent years due to its perceived technological ...
In condensed-matter systems, electrons are subjected to two different interactions under certain con...
The conduction electrons in graphene promise new opportunities to access the region of strong many-b...
The Landau-Fermi liquid picture for quasiparticles assumes that charge carriers are dressed by many-...
We have determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
In this thesis the properties of graphene are studied via the various aspects of the quantum transpo...
We have determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
We have determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
Item does not contain fulltextIn this chapter, we discuss how to build effective many-body models st...
The effectively massless, relativistic behaviour of graphene's charge carriers—known as Dirac fermio...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.Cataloged from PDF ve...
The prototypical exciton model of two interacting Dirac particles in graphene was analysed by Sabio...
This work explores many-body effects in novel nanostructures specifically on transport and optical p...
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...
Single-layer graphene has been widely researched in recent years due to its perceived technological ...
In condensed-matter systems, electrons are subjected to two different interactions under certain con...
The conduction electrons in graphene promise new opportunities to access the region of strong many-b...
The Landau-Fermi liquid picture for quasiparticles assumes that charge carriers are dressed by many-...
We have determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
In this thesis the properties of graphene are studied via the various aspects of the quantum transpo...
We have determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
We have determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...