Bulletin of the American Physical Society
APS March Meeting 2019
Volume 64, Number 2
Monday–Friday, March 4–8, 2019; Boston, Massachusetts
Session V41: Skyrmion Transport and Topological Hall Effect
2:30 PM–5:30 PM,
Thursday, March 7, 2019
BCEC
Room: 209
Sponsoring
Units:
GMAG DMP
Chair: Shulei Zhang, Argonne National Laboratory
Abstract: V41.00002 : Rare Earth-Transition Metal Alloys as Promising Materials for Small Skyrmions and Ultrafast Chiral Spin Texture Dynamics
3:06 PM–3:18 PM
Presenter:
Lucas Caretta
(Massachusetts Institute of Technology)
Authors:
Lucas Caretta
(Massachusetts Institute of Technology)
Maxwell Mann
(Massachusetts Institute of Technology)
Felix Buettner
(Massachusetts Institute of Technology)
Kohei Ueda
(Massachusetts Institute of Technology)
Can Avci
(Massachusetts Institute of Technology)
Ethan Rosenberg
(Massachusetts Institute of Technology)
Jackson Bauer
(Massachusetts Institute of Technology)
Bastian Pfau
(Max-Born-Institut)
Christian Günther
(Max-Born-Institut)
Piet Hessing
(Max-Born-Institut)
Alexandra Churikova
(Massachusetts Institute of Technology)
Christopher Klose
(Max-Born-Institut)
Michael Schneider
(Max-Born-Institut)
Dieter Engel
(Max-Born-Institut)
Colin Marcus
(Massachusetts Institute of Technology)
David Bono
(Massachusetts Institute of Technology)
Kai Bagschik
(DESY)
Stefan Eisebitt
(Max-Born-Institut)
Geoffrey S Beach
(Massachusetts Institute of Technology)
Here, we demonstrate that compensated ferrimagnets are not affected by these limits. We realize a current-driven domain wall velocity of over 1 km/s near the angular momentum compensation temperature (TA) and room-temperature stable skyrmions with minimum observed diameters approaching ~10 nm near magnetic compensation (TM). We present theory explaining these observations and demonstrate that high-speed, high-density spintronics devices based on current-driven spin textures can be realized using materials where TA and TM are close together.
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[2] Fert, A et al. Nat Nano 8 (2013)
[3] Emori, S et al. Nat Mat 12 (2013)
[4] Yang, S-H et al. Nat Nano 10 (2015)
[5] Kim, K-J et al. Nat Mat 16 (2017)
[6] Büttner, F et al. Sci Rep 8 (2018)
[7] Jungwirth, T et al. Nat Nano 11 (2016)
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