Time-reversal breaking topological superconductors are new states of matter which can support Majorana zero modes at the edge. In this Rapid Communication, we propose a different realization of one-dimensional topological superconductivity and Majorana zero modes. The proposed system consists of a monolayer of transition-metal dichalcogenides M X-2 (M = Mo, W; X = S, Se) on top of a superconducting substrate. Based on first-principles calculations, we show that a zigzag edge of the monolayer M X-2 terminated by a metal atom M has edge states with strong spin-orbit coupling and spontaneous magnetization. By proximity coupling with a superconducting substrate, topological superconductivity can be induced at such an edge. We propose NbS2 as a ...
Recently it was discovered that superconductivity in transition metal dichalcogenides (TMDs) is stro...
We propose a platform to realize nodal topological superconductors in a superconducting monolayer of...
Heavy metals, such as Au, Ag, and Pb, often have sharp surface states that are split by strong Rashb...
Time-reversal breaking topological superconductors are new states of matter which can support Majora...
Theoretically, it has been known that breaking spin degeneracy and effectively realizing spinless fe...
Recent experiments have provided evidence that one-dimensional (1D) topological superconductivity ca...
A clear demonstration of topological superconductivity (TS) and Majorana zero modes remains one of t...
International audienceJust like insulators can host topological Dirac states at their edges, superco...
Artificially engineered topological superconductivity has emerged as a viable route to create Majora...
Topological superconductors are predicted to harbor exotic boundary states-Majorana zero-energy mode...
A topological superconductor is characterized by having a pairing gap in the bulk and gapless self-h...
Topological superconductors with and without time-reversal symmetry are new phases of matters which ...
Chains of magnetic atoms, placed on the surface of s-wave superconductors, have been established as ...
A clear demonstration of topological superconductivity (TS) and Majorana zero modes remains one of t...
Superconducting materials exhibiting topological properties are emerging as an exciting platform to ...
Recently it was discovered that superconductivity in transition metal dichalcogenides (TMDs) is stro...
We propose a platform to realize nodal topological superconductors in a superconducting monolayer of...
Heavy metals, such as Au, Ag, and Pb, often have sharp surface states that are split by strong Rashb...
Time-reversal breaking topological superconductors are new states of matter which can support Majora...
Theoretically, it has been known that breaking spin degeneracy and effectively realizing spinless fe...
Recent experiments have provided evidence that one-dimensional (1D) topological superconductivity ca...
A clear demonstration of topological superconductivity (TS) and Majorana zero modes remains one of t...
International audienceJust like insulators can host topological Dirac states at their edges, superco...
Artificially engineered topological superconductivity has emerged as a viable route to create Majora...
Topological superconductors are predicted to harbor exotic boundary states-Majorana zero-energy mode...
A topological superconductor is characterized by having a pairing gap in the bulk and gapless self-h...
Topological superconductors with and without time-reversal symmetry are new phases of matters which ...
Chains of magnetic atoms, placed on the surface of s-wave superconductors, have been established as ...
A clear demonstration of topological superconductivity (TS) and Majorana zero modes remains one of t...
Superconducting materials exhibiting topological properties are emerging as an exciting platform to ...
Recently it was discovered that superconductivity in transition metal dichalcogenides (TMDs) is stro...
We propose a platform to realize nodal topological superconductors in a superconducting monolayer of...
Heavy metals, such as Au, Ag, and Pb, often have sharp surface states that are split by strong Rashb...