Orbital moments can form a symmetry-protected altermagnetic order with d-wave momentum splitting, predicted in CuBr2, VS2, MoO, and CrO monolayers.
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Hyperspatial projections of decorated Ammann-Beenker and Penrose lattices host interaction-induced Néel order that realizes g-wave and h-wave altermagnetism compatible with quasicrystalline symmetries.
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Orbital Altermagnetism in Two Dimensions
Orbital moments can form a symmetry-protected altermagnetic order with d-wave momentum splitting, predicted in CuBr2, VS2, MoO, and CrO monolayers.
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Unconventional Altermagnetism in Quasicrystals: A Hyperspatial Projective Construction
Hyperspatial projections of decorated Ammann-Beenker and Penrose lattices host interaction-induced Néel order that realizes g-wave and h-wave altermagnetism compatible with quasicrystalline symmetries.