Coulomb interactions drive altermagnetism in the Kagome Hubbard model at Dirac filling, producing an insulating state with split magnons detectable by inelastic neutron scattering.
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VSn is predicted as a 1:1 kagome metal exhibiting intertwined CDW order, anti-dome superconductivity, and persistent topological states.
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Altermagnetism in an interacting model of Kagome materials
Coulomb interactions drive altermagnetism in the Kagome Hubbard model at Dirac filling, producing an insulating state with split magnons detectable by inelastic neutron scattering.
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Intertwined charge density wave, tunable anti-dome superconductivity, and topological states in kagome metal VSn
VSn is predicted as a 1:1 kagome metal exhibiting intertwined CDW order, anti-dome superconductivity, and persistent topological states.