We discuss two one?dimensional model systems – the first is a single channel quantum wire with Ising anisotropy, while the second is two coupled helical edge states. We show that the two models are governed by the same low energy effective field theory, and interactions drive both systems to exhibit phases which are metallic, but with all single particle excitations gapped. We show that such states may be either topological or trivial; in the former case, the system demonstrates gapless end states, and insensitivity to disorder
Topology and disorder have a rich combined influence on quantum transport. In order to probe their i...
We study theoretically quantum states of two repelling spinless particles in a one-dimensional tight...
Among the broad spectrum of systems predicted to exhibit topological superconductivity and Majorana ...
The interplay between topology and interactions on the edge of a two-dimensional topological insulat...
We present a novel theoretical approach to incorporate electronic interactions in the study of two-d...
By decreasing the transversal confinement potential in interacting one-dimensional spinless electron...
We consider two coupled time-reversal-invariant helical edge modes of the same helicity, such as wou...
We present analysis of a single-channel interacting quantum wire problem in the presence of spin-orb...
Topological insulators are electronic materials that behave like an ordinary insulator internally (i...
With the discovery of the integer quantum Hall effect by von Klitzing and collaborators in 1980, the...
Die vorliegende Dissertation beschäftigt sich mit der theoretischen Beschreibung von Transporteigens...
This thesis presents the work done on electronic transport in various interacting and non-interactin...
Upon increasing the electron density in a quantum wire, the one-dimensional electron system undergoe...
We investigate a system consisting of one or two topological-insulator leads which are tunnel couple...
Topological insulators, superconductors and semi-metals are states of ma er with unique features suc...
Topology and disorder have a rich combined influence on quantum transport. In order to probe their i...
We study theoretically quantum states of two repelling spinless particles in a one-dimensional tight...
Among the broad spectrum of systems predicted to exhibit topological superconductivity and Majorana ...
The interplay between topology and interactions on the edge of a two-dimensional topological insulat...
We present a novel theoretical approach to incorporate electronic interactions in the study of two-d...
By decreasing the transversal confinement potential in interacting one-dimensional spinless electron...
We consider two coupled time-reversal-invariant helical edge modes of the same helicity, such as wou...
We present analysis of a single-channel interacting quantum wire problem in the presence of spin-orb...
Topological insulators are electronic materials that behave like an ordinary insulator internally (i...
With the discovery of the integer quantum Hall effect by von Klitzing and collaborators in 1980, the...
Die vorliegende Dissertation beschäftigt sich mit der theoretischen Beschreibung von Transporteigens...
This thesis presents the work done on electronic transport in various interacting and non-interactin...
Upon increasing the electron density in a quantum wire, the one-dimensional electron system undergoe...
We investigate a system consisting of one or two topological-insulator leads which are tunnel couple...
Topological insulators, superconductors and semi-metals are states of ma er with unique features suc...
Topology and disorder have a rich combined influence on quantum transport. In order to probe their i...
We study theoretically quantum states of two repelling spinless particles in a one-dimensional tight...
Among the broad spectrum of systems predicted to exhibit topological superconductivity and Majorana ...