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Engineering Domain-Wall Motion in Co-Fe-B/MgO Ultrathin Films with Perpendicular Anisotropy Using Patterned Substrates with Subnanometer Step Modulation

Academic Article
Publication Date:
2018
abstract:
Control of magnetic domain-wall motion in nanowires has attracted great interest due to the possibility to develop nonvolatile memory and logic circuits. We show that efficient domain-wall pinning can be engineered by growing Co-Fe-B/MgO ultra-thin magnetic films with perpendicular anisotropy on a patterned substrate exhibiting subnanometer steps modulation. The ratio of domain-wall velocity along and across the steps is found to be as high as 70, which corresponds to a variation of the depinning field up to 7 mT demonstrating a very efficient storing pinning scheme. In addition, we demonstrate very efficient domain-wall motion along the 70 nm conducts separating the steps. Our approach is compatible with nanoscale devices and large-scale mass production, opening new opportunities for domain-wall storage applications.
Iris type:
01.01 Articolo in rivista
Keywords:
Domain-Wall Motion; Co-Fe-B/MgO; Perpendicular Anisotropy; Patterned Substrates
List of contributors:
Lamperti, Alessio; Mantovan, Roberto; Tallarida, Graziella
Authors of the University:
LAMPERTI ALESSIO
MANTOVAN ROBERTO
TALLARIDA GRAZIELLA
Handle:
https://iris.cnr.it/handle/20.500.14243/380652
Published in:
PHYSICAL REVIEW APPLIED
Journal
  • Overview

Overview

URL

https://journals.aps.org/prapplied/abstract/10.1103/PhysRevApplied.10.064053
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