logo
ResearchBunny Logo
Topological superconductivity in skyrmion lattices

Physics

Topological superconductivity in skyrmion lattices

E. Mascot, J. Bedow, et al.

This groundbreaking research by Eric Mascot, Jasmin Bedow, Martin Graham, Stephan Rachel, and Dirk K. Morr explores the ability to manipulate topological phases in magnet-superconductor hybrid systems through the control of skyrmion radius, revealing vital insights into topological superconductivity using advanced Josephson scanning tunneling spectroscopy.

00:00
00:00
~3 min • Beginner • English
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 skyrmion radius, which can be achieved experimentally through an external magnetic field, one can tune between different topological superconducting phases, allowing one to explore their unique properties and the transitions between them. In these MSH systems, Josephson scanning tunneling spectroscopy spatially visualizes one of the most crucial aspects underlying the emergence of topological superconductivity, the spatial structure of the induced spin-triplet correlations.
Publisher
npj Quantum Materials
Published On
Jan 08, 2021
Authors
Eric Mascot, Jasmin Bedow, Martin Graham, Stephan Rachel, Dirk K. Morr
Tags
magnet-superconductor hybrid
topological phases
skyrmion lattice
Josephson scanning tunneling spectroscopy
spin-triplet correlations
Listen, Learn & Level Up
Over 10,000 hours of research content in 25+ fields, available in 12+ languages.
No more digging through PDFs, just hit play and absorb the world's latest research in your language, on your time.
listen to research audio papers with researchbunny