We study the stability of multiple conducting edge states in a topological insulator against perturbations allowed by the time-reversal symmetry. A system is modeled as a multi-channel Luttinger liquid, with the number of channels equal to the number of Kramers doublets at the edge. Assuming strong interactions and weak disorder, we first formulate a low-energy effective theory for a clean translation invariant system and then include the disorder terms allowed by the time-reversal symmetry. In a clean system with N Kramers doublets, N − 1 edge states are gapped by Josephson couplings and the single remaining gapless mode describes collective motion of Cooper pairs synchronous across the channels. Disorder perturbation in this regime, allow...
Robustness against disorder and defects is a pivotal advantage of topological systems, manifested by...
Interfacing s-wave superconductors and quantum spin Hall edges produces time-reversal-invariant topo...
We investigate the stability of conducting and insulating phases in multichannel Luttinger liquids w...
We study the stability of multiple conducting edge states in a topological insulator against perturb...
We study the stability of multiple conducting edge states in a topological insulator against perturb...
We study the stability of multiple conducting edge states in a topological insulator against all mul...
We study the stability of multiple conducting edge states in a topological insulator against all mul...
Two-dimensional time-reversal-invariant topological superconductors host helical Majorana fermions a...
Topological insulators are one of the most thoroughly investigated systems in condensed matter physi...
We devise an approach to calculation of scaling dimensions of generic operators describing scatterin...
We devise an approach to calculation of scaling dimensions of generic operators describing scatterin...
The helical edge states of time-reversal invariant two-dimensional topological insulators are protec...
The subject of the present thesis are some aspects of impurities affecting mesoscopic systems with r...
A topological insulator has a pair of extended states at the edge in the bulk insulating regime. We ...
Topology in condensed matter physics manifests itself in the emergence of edge or surface states pro...
Robustness against disorder and defects is a pivotal advantage of topological systems, manifested by...
Interfacing s-wave superconductors and quantum spin Hall edges produces time-reversal-invariant topo...
We investigate the stability of conducting and insulating phases in multichannel Luttinger liquids w...
We study the stability of multiple conducting edge states in a topological insulator against perturb...
We study the stability of multiple conducting edge states in a topological insulator against perturb...
We study the stability of multiple conducting edge states in a topological insulator against all mul...
We study the stability of multiple conducting edge states in a topological insulator against all mul...
Two-dimensional time-reversal-invariant topological superconductors host helical Majorana fermions a...
Topological insulators are one of the most thoroughly investigated systems in condensed matter physi...
We devise an approach to calculation of scaling dimensions of generic operators describing scatterin...
We devise an approach to calculation of scaling dimensions of generic operators describing scatterin...
The helical edge states of time-reversal invariant two-dimensional topological insulators are protec...
The subject of the present thesis are some aspects of impurities affecting mesoscopic systems with r...
A topological insulator has a pair of extended states at the edge in the bulk insulating regime. We ...
Topology in condensed matter physics manifests itself in the emergence of edge or surface states pro...
Robustness against disorder and defects is a pivotal advantage of topological systems, manifested by...
Interfacing s-wave superconductors and quantum spin Hall edges produces time-reversal-invariant topo...
We investigate the stability of conducting and insulating phases in multichannel Luttinger liquids w...