We propose a new setup for creating Majorana bound states in a two-dimensional electron gas Josephson junction. Our proposal relies exclusively on a supercurrent parallel to the junction as a mechanism of breaking time-reversal symmetry. We show that combined with spin-orbit coupling, supercurrents induce a Zeeman-like spin splitting. Further, we identify a new conserved quantity---charge-momentum parity---that prevents the opening of the topological gap by the supercurrent in a straight Josephson junction. We propose breaking this conservation law by adding a third superconductor, introducing a periodic potential, or making the junction zigzag-shaped. By comparing the topological phase diagrams and practical limitations of these systems we...
We show how the superconducting phase difference in a Josephson junction may be used to split the Kr...
A semiconducting nanowire with strong Rashba spin-orbit coupling and coupled to a superconductor can...
Transition metal dichalcogenides (TMDs) offer a unique platform to study unconventional superconduct...
A semiconducting nanowire with strong Rashba spin-orbit coupling and coupled to a superconductor can...
We consider a Josephson junction consisting of superconductor/ferromagnetic insulator (S/FI) bilayer...
We study the equilibrium dc Josephson current in a junction between an s-wave and a topological supe...
We propose a Josephson junction setup based on a topological insulator (TI) thin film to detect Majo...
The search for conclusive and robust Majorana Bound State (MBS) signatures hasbeen of great experime...
Recently, topological superconductors based on Josephson junctions in two-dimensional electron gases...
Much of modernmesoscopic physics focuses on studying hybrid superconducting structures: systems that...
Josephson junctions in a two-dimensional electron gas with spin-orbit coupling are a promising candi...
We study phase-controlled planar Josephson junction comprising a two-dimensional electron gas with s...
We study phase-controlled planar Josephson junction comprising a two-dimensional electron gas with s...
A fundamental obstacle for achieving quantum computation is local decoherence. One way to circumvent...
The Josephson supercurrent through a hybrid Majorana-quantum dot-Majorana junction is investigated. ...
We show how the superconducting phase difference in a Josephson junction may be used to split the Kr...
A semiconducting nanowire with strong Rashba spin-orbit coupling and coupled to a superconductor can...
Transition metal dichalcogenides (TMDs) offer a unique platform to study unconventional superconduct...
A semiconducting nanowire with strong Rashba spin-orbit coupling and coupled to a superconductor can...
We consider a Josephson junction consisting of superconductor/ferromagnetic insulator (S/FI) bilayer...
We study the equilibrium dc Josephson current in a junction between an s-wave and a topological supe...
We propose a Josephson junction setup based on a topological insulator (TI) thin film to detect Majo...
The search for conclusive and robust Majorana Bound State (MBS) signatures hasbeen of great experime...
Recently, topological superconductors based on Josephson junctions in two-dimensional electron gases...
Much of modernmesoscopic physics focuses on studying hybrid superconducting structures: systems that...
Josephson junctions in a two-dimensional electron gas with spin-orbit coupling are a promising candi...
We study phase-controlled planar Josephson junction comprising a two-dimensional electron gas with s...
We study phase-controlled planar Josephson junction comprising a two-dimensional electron gas with s...
A fundamental obstacle for achieving quantum computation is local decoherence. One way to circumvent...
The Josephson supercurrent through a hybrid Majorana-quantum dot-Majorana junction is investigated. ...
We show how the superconducting phase difference in a Josephson junction may be used to split the Kr...
A semiconducting nanowire with strong Rashba spin-orbit coupling and coupled to a superconductor can...
Transition metal dichalcogenides (TMDs) offer a unique platform to study unconventional superconduct...