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Giant momentum-dependent spin splitting in centrosymmetric low-<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML"><mml:mi>Z</mml:mi></mml:math> antiferromagnets
Physical review. B./Physical review. B · 2020 · Vol. 102(1)
Lin‐Ding Yuan✉(University of Colorado Boulder)Zhi Wang(University of Colorado Boulder)Jun‐Wei Luo(Chinese Academy of Sciences)É. I. Rashba(Harvard University)Alex Zunger(University of Colorado Boulder)
Abstract
The traditional bulk Rashba effect predicts spin-orbit coupling induced wave-vector-dependent spin splitting between energy bands in nonmagnetic solids that lack spatial inversion symmetry. The authors show here how the violation of magnetic symmetry leads instead to a few prototypes of momentum-dependent spin splitting of energy bands that are induced by antiferromagnetism. This discovery broadens the spintronics playing field to include centrosymmetric compounds, even made of light elements with low spin-orbit coupling. Atomistic density functional calculations show that giant splitting above 200 meV is possible between top two valence bands.
Physics of Superconductivity and MagnetismMagnetic properties of thin filmsAdvanced Condensed Matter PhysicsSpin (aerodynamics)PhysicsMomentum (technical analysis)Angular momentumMathematical physicsQuantum mechanicsThermodynamics
Funding
- National Science Foundation
- U.S. Department of Energy
- National Natural Science Foundation of China
- Office of Science
- University of Colorado Boulder
- Division of Materials Research
- Basic Energy Sciences
Citations
482
FWCI
15.52
field-weighted impact
References
67
Percentile
99%
vs. same field & year
Citations per year
References
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