Abstract Atomic manipulation and interface engineering techniques have provided an intriguing approach to custom-designing topological superconductors and the ensuing Majorana zero modes, representing a paradigm for the realization of topological quantum computing and topology-based devices. Magnet-superconductor hybrid (MSH) systems have proven to be experimentally suitable to engineer topological superconductivity through the control of both the complex structure of its magnetic layer and the interface properties of the superconducting surface. Here, we demonstrate that two-dimensional MSH systems containing a magnetic skyrmion lattice provide an unprecedented ability to control the emergence of topological phases. By changing the skyrmi...
We study the formation and control of magnetization and currents at the interface of heterostructure...
Topological superconductors, which support Majorana fermion excitations, have been the subject of in...
When an in-plane field is applied to a clean interface superconductor, a Fulde-Ferrell-Larkin-Ovchin...
Quantum engineering of topological superconductors and of the ensuing Majorana zero modes might hold...
Topological superconductors are predicted to harbor exotic boundary states-Majorana zero-energy mode...
We propose an alternative route to stabilize magnetic skyrmions which does not require Dzyaloshinkii...
In the context of the search for topological superconductivity and the Majorana fermion, we analyze ...
Much of modernmesoscopic physics focuses on studying hybrid superconducting structures: systems that...
The importance of topology in condensed matter physics has expanded in recent years as it has become...
Topological superconductors can support localized Majorana states at their boundaries(1-5). These qu...
The importance of topology in condensed matter physics has expanded in recent years as it has become...
The importance of topology in condensed matter physics has expanded in recent years as it has become...
Chains of magnetic atoms, placed on the surface of s-wave superconductors, have been established as ...
A topological superconductor is a new state of matter that attract a lot of interest for its potenti...
A topological superconductor is a new state of matter that attract a lot of interest for its potenti...
We study the formation and control of magnetization and currents at the interface of heterostructure...
Topological superconductors, which support Majorana fermion excitations, have been the subject of in...
When an in-plane field is applied to a clean interface superconductor, a Fulde-Ferrell-Larkin-Ovchin...
Quantum engineering of topological superconductors and of the ensuing Majorana zero modes might hold...
Topological superconductors are predicted to harbor exotic boundary states-Majorana zero-energy mode...
We propose an alternative route to stabilize magnetic skyrmions which does not require Dzyaloshinkii...
In the context of the search for topological superconductivity and the Majorana fermion, we analyze ...
Much of modernmesoscopic physics focuses on studying hybrid superconducting structures: systems that...
The importance of topology in condensed matter physics has expanded in recent years as it has become...
Topological superconductors can support localized Majorana states at their boundaries(1-5). These qu...
The importance of topology in condensed matter physics has expanded in recent years as it has become...
The importance of topology in condensed matter physics has expanded in recent years as it has become...
Chains of magnetic atoms, placed on the surface of s-wave superconductors, have been established as ...
A topological superconductor is a new state of matter that attract a lot of interest for its potenti...
A topological superconductor is a new state of matter that attract a lot of interest for its potenti...
We study the formation and control of magnetization and currents at the interface of heterostructure...
Topological superconductors, which support Majorana fermion excitations, have been the subject of in...
When an in-plane field is applied to a clean interface superconductor, a Fulde-Ferrell-Larkin-Ovchin...