We investigate the role of the coupling between a spin-orbit coupled semiconductor nanowire and a conventional s-wave superconductor on the emergence of the topological superconducting phase with Majorana bound states in an applied magnetic field. We show that when the coupling is strong, the topological phase transition point is very sensitive to the size of the superconductor and in order to reach the topological phase a strong magnetic field is required, which can easily be detrimental to superconductivity. Moreover, the induced energy gap separating the Majorana bound states and other quasiparticles in the topological phase is substantially suppressed compared to the gap at zero field. In contrast, in the weak-coupling regime, we find t...
Nanowires with Rashba spin-orbit coupling represent a promising platform for the realization of one-...
Hybrid superconductor–semiconductor nanowires with Rashba spin–orbit coupling are arguably becoming ...
In the voyage towards solving increasingly challenging computations of physical systems, quantum com...
We investigate the role of the coupling between a spin-orbit coupled semiconductor nanowire and a co...
We investigate the role of the coupling between a spin-orbit coupled semiconductor nanowire and a co...
We investigate the role of the coupling between a spin-orbit coupled semiconductor nanowire and a co...
We investigate the role of the coupling between a spin-orbit coupled semiconductor nanowire and a co...
We consider core–shell nanowires with prismatic geometry contacted with two or more superconductors ...
We study the topological phase diagram of a setup composed of two nanowires with strong Rashba spin-...
Hybrid superconductor-semiconductor nanowires with Rashba spin-orbit coupling are arguably becoming ...
Hybrid superconductor-semiconductor nanowires with Rashba spin-orbit coupling are arguably becoming ...
Hybrid superconductor-semiconductor nanowires with Rashba spin-orbit coupling are arguably becoming ...
We consider core–shell nanowires with prismatic geometry contacted with two or more superconductors ...
We consider core–shell nanowires with prismatic geometry contacted with two or more superconductors ...
A heterostructure consisting of a topological insulator (TI) nanowire brought into proximity with a ...
Nanowires with Rashba spin-orbit coupling represent a promising platform for the realization of one-...
Hybrid superconductor–semiconductor nanowires with Rashba spin–orbit coupling are arguably becoming ...
In the voyage towards solving increasingly challenging computations of physical systems, quantum com...
We investigate the role of the coupling between a spin-orbit coupled semiconductor nanowire and a co...
We investigate the role of the coupling between a spin-orbit coupled semiconductor nanowire and a co...
We investigate the role of the coupling between a spin-orbit coupled semiconductor nanowire and a co...
We investigate the role of the coupling between a spin-orbit coupled semiconductor nanowire and a co...
We consider core–shell nanowires with prismatic geometry contacted with two or more superconductors ...
We study the topological phase diagram of a setup composed of two nanowires with strong Rashba spin-...
Hybrid superconductor-semiconductor nanowires with Rashba spin-orbit coupling are arguably becoming ...
Hybrid superconductor-semiconductor nanowires with Rashba spin-orbit coupling are arguably becoming ...
Hybrid superconductor-semiconductor nanowires with Rashba spin-orbit coupling are arguably becoming ...
We consider core–shell nanowires with prismatic geometry contacted with two or more superconductors ...
We consider core–shell nanowires with prismatic geometry contacted with two or more superconductors ...
A heterostructure consisting of a topological insulator (TI) nanowire brought into proximity with a ...
Nanowires with Rashba spin-orbit coupling represent a promising platform for the realization of one-...
Hybrid superconductor–semiconductor nanowires with Rashba spin–orbit coupling are arguably becoming ...
In the voyage towards solving increasingly challenging computations of physical systems, quantum com...