Interface-induced phenomena in magnetism

Явления, индуцированные интерфейсом, в магнетизме
James M. Rondinelli, Axel Hoffmann, Iván K. Schuller, A. Thiaville, Steven J. May, F. Hellman, A. V. Kimel, I. N. Krivorotov, A. N. Slavin, Yaroslav Tserkovnyak, Peter Fischer, Eric E. Fullerton, Nitin Samarth, Chris Leighton, H. A. Dürr, Geoffrey S. D. Beach, B. Koopmans, A. K. Petford‐Long, M. D. Stiles, T. Jungwirth, Daniel C. Ralph, A. H. MacDonald, Oleg Tchernyshyov, Darío Arena, J. Grollier, Joseph P. Heremans, Barry Zink
2017-06-05

exchange biasexchange spring magnetsinterface-induced magnetisminterfacial symmetry breakingnon-collinear spin texturesoxide heterostructuresspin Hall effect (SHE)spin accumulationspin currentsspin pumpingspin transfer torque (STT)spin-orbit couplingtopological insulatorsultrafast magnetization dynamics
This article reviews static and dynamic interfacial effects in magnetism, focusing on interfacially-driven magnetic effects and phenomena associated with spin-orbit coupling and intrinsic symmetry breaking at interfaces. It provides a historical background and literature survey, but focuses on recent progress, identifying the most exciting new scientific results and pointing to promising future research directions. It starts with an introduction and overview of how basic magnetic properties are affected by interfaces, then turns to a discussion of charge and spin transport through and near interfaces and how these can be used to control the properties of the magnetic layer. Important concepts include spin accumulation, spin currents, spin transfer torque, and spin pumping. An overview is provided to the current state of knowledge and existing review literature on interfacial effects such as exchange bias, exchange spring magnets, spin Hall effect, oxide heterostructures, and topological insulators. The article highlights recent discoveries of interface-induced magnetism and non-collinear spin textures, non-linear dynamics including spin torque transfer and magnetization reversal induced by interfaces, and interfacial effects in ultrafast magnetization processes.
1
Charge and spin transport near interfaces (spin accumulation, spin currents) can be used to control magnetic layer properties via spin transfer torque and spin pumping.
2
Interfaces enable non-linear dynamical phenomena, including interface-driven spin-torque transfer and magnetization reversal.
3
Interfaces significantly modify basic magnetic properties, producing interfacial magnetic effects driven by spin-orbit coupling and symmetry breaking.
4
Interfacial effects are important in ultrafast magnetization processes and in systems such as exchange-biased layers, oxide heterostructures, spin Hall materials, and topological insulators.
5
Recent discoveries include interface-induced magnetism and non-collinear spin textures arising at interfaces.

Magnetic interfaces and interfacial regions in magnetic heterostructures and thin films

Interface-induced magnetic phenomena and interfacial effects (static and dynamic) driven by spin–orbit coupling and symmetry breaking, including spin accumulation, spin currents, spin-transfer torque, spin pumping, exchange bias, non-collinear spin textures, and ultrafast interfacial magnetization dynamics

Publication Details
Publication Date
2017-06-05
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Authors
James M. Rondinelli
Axel Hoffmann
Iván K. Schuller
A. Thiaville
Steven J. May
F. Hellman
A. V. Kimel
I. N. Krivorotov
A. N. Slavin
Yaroslav Tserkovnyak
Peter Fischer
Eric E. Fullerton
Nitin Samarth
Chris Leighton
H. A. Dürr
Geoffrey S. D. Beach
B. Koopmans
A. K. Petford‐Long
M. D. Stiles
T. Jungwirth
Daniel C. Ralph
A. H. MacDonald
Oleg Tchernyshyov
Darío Arena
J. Grollier
Joseph P. Heremans
Barry Zink
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