The scattering of Dirac electrons by topological defects could be one of the most relevant sources of resistance in graphene and at the boundary surfaces of a three-dimensional topological insulator (3D TI). In the long wavelength, continuous limit of the Dirac equation, the topological defect can be described as a distortion of the metric in curved space, which can be accounted for by a rotation of the Gamma matrices and by a spin connection inherited with the curvature. These features modify the scattering properties of the carriers. We discuss the self-energy of defect formation with this approach and the electron cross-section for intra-valley scattering at an edge dislocation in graphene, including corrections coming from the local str...
This thesis provides a detailed microscopic understanding of the impurity scattering of topologicall...
The commonly adopted classification of the electronic phases of matter as metals, insulators, semime...
Two Dirac fermion systems recently realized in solid state physics are believed promising for novel ...
The central topic in this thesis is the effect of topological defects in two distinct types of co...
Defects from impurities, edges, junctions or domain walls have local detrimental effects on the supe...
We provide a detailed microscopic characterization of the influence of defect-induced disorder on th...
We study theoretical properties of robust low energy electronic excitations associated with topologi...
Dislocations and grain boundaries are intrinsic topological defects of large-scale polycrystalline s...
We study theoretical properties of robust low energy electronic excitations associated with topologi...
Topological insulators are insulating in the bulk, but process metallic states around its boundary o...
Surfaces of topological insulators host a new class of states with Dirac dispersion and helical spin...
DoctorDirac materials, graphene and topological insulators, are the matters that have a linear energ...
Dirac materials are a class of condensed matter systems in which the relativistic Dirac equation des...
Dislocations and grain boundaries are intrinsic topological defects of large-scale polycrystalline s...
Three-dimensional topological insulators host surface states with linear dispersion, which manifest ...
This thesis provides a detailed microscopic understanding of the impurity scattering of topologicall...
The commonly adopted classification of the electronic phases of matter as metals, insulators, semime...
Two Dirac fermion systems recently realized in solid state physics are believed promising for novel ...
The central topic in this thesis is the effect of topological defects in two distinct types of co...
Defects from impurities, edges, junctions or domain walls have local detrimental effects on the supe...
We provide a detailed microscopic characterization of the influence of defect-induced disorder on th...
We study theoretical properties of robust low energy electronic excitations associated with topologi...
Dislocations and grain boundaries are intrinsic topological defects of large-scale polycrystalline s...
We study theoretical properties of robust low energy electronic excitations associated with topologi...
Topological insulators are insulating in the bulk, but process metallic states around its boundary o...
Surfaces of topological insulators host a new class of states with Dirac dispersion and helical spin...
DoctorDirac materials, graphene and topological insulators, are the matters that have a linear energ...
Dirac materials are a class of condensed matter systems in which the relativistic Dirac equation des...
Dislocations and grain boundaries are intrinsic topological defects of large-scale polycrystalline s...
Three-dimensional topological insulators host surface states with linear dispersion, which manifest ...
This thesis provides a detailed microscopic understanding of the impurity scattering of topologicall...
The commonly adopted classification of the electronic phases of matter as metals, insulators, semime...
Two Dirac fermion systems recently realized in solid state physics are believed promising for novel ...