activity
20182020
most citedSkyrmion ratchet propagation: Utilizing the skyrmion Hall effect in AC racetrack storage devices

54 citations · 54 across the 1 of their papers we have counts for

collaborators

5 papers

cond-mat.mes-hall202054 cited

Skyrmion ratchet propagation: Utilizing the skyrmion Hall effect in AC racetrack storage devices

Börge Göbel, Ingrid Mertig

Magnetic skyrmions are whirl-like nano-objects with topological protection. When driven by direct currents (DC), skyrmions move but experience a transverse deflection. This so-call…

cond-mat.mes-hall2020

Beyond skyrmions: Review and perspectives of alternative magnetic quasiparticles

Börge Göbel, Ingrid Mertig, Oleg A. Tretiakov

Magnetic skyrmions have attracted enormous research interest since their discovery a decade ago. The non-trivial real-space topology of these nano-whirls leads to fundamentally int…

cond-mat.mes-hall2020

Topological Hall signatures of magnetic hopfions

Börge Göbel, Collins Ashu Akosa, Gen Tatara +1

Magnetic hopfions are topologically protected three-dimensional solitons that are constituted by a tube which exhibits a topologically nontrivial spin texture in the cross-section…

cond-mat.str-el2019

Electrical writing, deleting, reading, and moving of magnetic skyrmioniums in a racetrack device

Börge Göbel, Alexander F. Schäffer, Jamal Berakdar +2

A magnetic skyrmionium (also called 2-skyrmion) can be understood as a skyrmion - a topologically non-trivial magnetic whirl - which is situated in the center of a second skyrmi…

cond-mat.str-el2018

The family of topological Hall effects for electrons in skyrmion crystals

Börge Göbel, Alexander Mook, Jürgen Henk +1

Hall effects of electrons can be produced by an external magnetic field, spin orbit-coupling or a topologically non-trivial spin texture. The topological Hall effect (THE) - caused…