We study the properties of a quantum dot coupled to a topological superconductor and a normal lead and discuss the interplay between Kondo-and Majorana-induced couplings in quantum dots. The latter appears due to the presence of Majorana zero-energy modes localized, for example, at the ends of the one-dimensional superconductor. We investigate the phase diagram of the system as a function of Kondo and Majorana interactions using a renormalization-group analysis, a slave-boson mean-field theory, and numerical simulations using the density-matrix renormalization-group method. We show that, in addition to the well-known Kondo fixed point, the system may flow to a new fixed point controlled by the Majorana-induced coupling, which is characteriz...
International audienceWe study Kondo screening obtained by coupling Majorana bound states, located o...
© 2015, EDP Sciences, SIF, Springer-Verlag Berlin Heidelberg. We investigate the linear thermoelectr...
IJvB acknowledges studentship funding from EPSRC under grant no. EP/I007002/1.We carry out a theoret...
We consider an interacting nanowire/superconductor heterostructure attached to metallic leads. The d...
Motivated by the recent experimental progress in the search for Majorana fermions, we identify signa...
We investigate theoretically the topological Kondo effect (TKE) and related non-Fermi-liquid (NFL) p...
We investigate theoretically the topological Kondo effect (TKE) and related non-Fermi-liquid (NFL) p...
We investigate the linear thermoelectric response of an interacting quantum dot side-coupl...
International audienceWe study Kondo screening obtained by coupling Majorana bound states, located o...
International audienceWe study Kondo screening obtained by coupling Majorana bound states, located o...
We perform a theoretical analysis of the fate of local magnetic moment of a quantum dot coupled to a...
International audienceWe study Kondo screening obtained by coupling Majorana bound states, located o...
International audienceWe study Kondo screening obtained by coupling Majorana bound states, located o...
International audienceWe study Kondo screening obtained by coupling Majorana bound states, located o...
International audienceWe study Kondo screening obtained by coupling Majorana bound states, located o...
International audienceWe study Kondo screening obtained by coupling Majorana bound states, located o...
© 2015, EDP Sciences, SIF, Springer-Verlag Berlin Heidelberg. We investigate the linear thermoelectr...
IJvB acknowledges studentship funding from EPSRC under grant no. EP/I007002/1.We carry out a theoret...
We consider an interacting nanowire/superconductor heterostructure attached to metallic leads. The d...
Motivated by the recent experimental progress in the search for Majorana fermions, we identify signa...
We investigate theoretically the topological Kondo effect (TKE) and related non-Fermi-liquid (NFL) p...
We investigate theoretically the topological Kondo effect (TKE) and related non-Fermi-liquid (NFL) p...
We investigate the linear thermoelectric response of an interacting quantum dot side-coupl...
International audienceWe study Kondo screening obtained by coupling Majorana bound states, located o...
International audienceWe study Kondo screening obtained by coupling Majorana bound states, located o...
We perform a theoretical analysis of the fate of local magnetic moment of a quantum dot coupled to a...
International audienceWe study Kondo screening obtained by coupling Majorana bound states, located o...
International audienceWe study Kondo screening obtained by coupling Majorana bound states, located o...
International audienceWe study Kondo screening obtained by coupling Majorana bound states, located o...
International audienceWe study Kondo screening obtained by coupling Majorana bound states, located o...
International audienceWe study Kondo screening obtained by coupling Majorana bound states, located o...
© 2015, EDP Sciences, SIF, Springer-Verlag Berlin Heidelberg. We investigate the linear thermoelectr...
IJvB acknowledges studentship funding from EPSRC under grant no. EP/I007002/1.We carry out a theoret...