Collinear spin-orbital magnets host mixed-parity altermagnetism as an intermediate regime between even- and odd-parity forms, inducible by circularly polarized light in a two-sublattice two-orbital model.
Atomic altermagnetism
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Extended s-wave altermagnets are introduced as fully gapped spin-compensated states with isotropic spin splitting arising from valley-exchange symmetries, shown via effective two-valley and microscopic models with guiding principles for identification.
AIAO order in pyrochlore iridates is shown to be a noncollinear d-wave altermagnet analog with SOC-induced momentum-dependent spin splitting and zero-momentum band splitting.
Dual-orbital configurations in antiferromagnetic 2D square lattices lift Kramers degeneracy via orbital anisotropy in same-spin hopping, generating d-wave or g-wave altermagnetism, with M-TCNX monolayers identified as g-wave candidates.
Spinon-holon parton theory for ARPES response of altermagnetic Mott insulators predicts renormalized bandwidth and spin-split spectra with spin-dependent weights, confirmed via tensor network simulations.
First-principles and tight-binding analysis shows ligand-assisted coupling dominates altermagnetic spin-splitting in Co1/4NbSe2.
A weak crystal potential in d-wave altermagnets induces real-space spin quadrupolar order without unit cell enlargement.
Symmetry analysis of ZnPc-MOF shows two-fold degenerate bands along Y lines in AB-stacked bilayers due to 2D irreps, polarization-dependent optical conductivity, and quasicrystalline states closer to the Fermi energy than in graphene.
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Extended s-wave altermagnets
Extended s-wave altermagnets are introduced as fully gapped spin-compensated states with isotropic spin splitting arising from valley-exchange symmetries, shown via effective two-valley and microscopic models with guiding principles for identification.
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Theory of Angle Resolved Photoemission Spectroscopy of Altermagnetic Mott Insulators
Spinon-holon parton theory for ARPES response of altermagnetic Mott insulators predicts renormalized bandwidth and spin-split spectra with spin-dependent weights, confirmed via tensor network simulations.