We study a one-dimensional interacting electronic liquid coupled to a 1D array of classical magnetic moments and to a superconductor. We show that at low energy and temperature the magnetic moments and the electrons become strongly entangled and that a magnetic spiral structure emerges. For strong enough coupling between the electrons and magnetic moments, the 1D electronic liquid is driven into a topological superconducting phase supporting Majorana fermions without any fine-tuning of external parameters. Our analysis applies at low enough temperature to a quantum wire in proximity to a superconductor when the hyperfine interaction between electrons and nuclear spins is taken into account, or to a chain of magnetic adatoms adsorbed on a su...
Helical liquids are one-dimensional quantum many-body systems where the low-energy excitations have ...
Heavy metals, such as Au, Ag, and Pb, often have sharp surface states that are split by strong Rashb...
We investigate the edge properties of Abelian topological phases in two spatial dimensions. We disco...
We study a one-dimensional interacting electronic liquid coupled to a 1D array of classical magnetic...
One of the most promising proposals for engineering topological superconductivity and Majorana fermi...
We consider quasi-one-dimensional Ruderman-Kittel-Kasuya-Yosida (RKKY) systems in proximity to an s-...
We present a self-consistent analysis of the topological superconductivity arising from the interact...
Among the broad spectrum of systems predicted to exhibit topological superconductivity and Majorana ...
The interplay between superconductivity, magnetic field, and spin-orbit coupling can lead to the rea...
We investigate the role of the coupling between a spin-orbit coupled semiconductor nanowire and a co...
This thesis presents theoretical studies of strongly correlated systems as well as topologically ord...
Recent experiments have provided evidence that one-dimensional (1D) topological superconductivity ca...
We theoretically consider the effect of a spatially periodic modulation of the superconducting order...
We study the condition for a topological superconductor (TS) phase with end Majorana fermions to app...
The possibility to observe and manipulate Majorana fermions as end states of one-dimensional topolog...
Helical liquids are one-dimensional quantum many-body systems where the low-energy excitations have ...
Heavy metals, such as Au, Ag, and Pb, often have sharp surface states that are split by strong Rashb...
We investigate the edge properties of Abelian topological phases in two spatial dimensions. We disco...
We study a one-dimensional interacting electronic liquid coupled to a 1D array of classical magnetic...
One of the most promising proposals for engineering topological superconductivity and Majorana fermi...
We consider quasi-one-dimensional Ruderman-Kittel-Kasuya-Yosida (RKKY) systems in proximity to an s-...
We present a self-consistent analysis of the topological superconductivity arising from the interact...
Among the broad spectrum of systems predicted to exhibit topological superconductivity and Majorana ...
The interplay between superconductivity, magnetic field, and spin-orbit coupling can lead to the rea...
We investigate the role of the coupling between a spin-orbit coupled semiconductor nanowire and a co...
This thesis presents theoretical studies of strongly correlated systems as well as topologically ord...
Recent experiments have provided evidence that one-dimensional (1D) topological superconductivity ca...
We theoretically consider the effect of a spatially periodic modulation of the superconducting order...
We study the condition for a topological superconductor (TS) phase with end Majorana fermions to app...
The possibility to observe and manipulate Majorana fermions as end states of one-dimensional topolog...
Helical liquids are one-dimensional quantum many-body systems where the low-energy excitations have ...
Heavy metals, such as Au, Ag, and Pb, often have sharp surface states that are split by strong Rashb...
We investigate the edge properties of Abelian topological phases in two spatial dimensions. We disco...