Sliding bilayer altermagnets host antiferromagnetic half-metallicity and Chern insulator phases via spin-dependent interlayer hopping in ferrovalley states, demonstrated in V2OSSe by first-principles calculations.
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Rolling 2D d-wave altermagnets into nanotubes converts momentum-dependent spin splitting into chiral-angle-controlled 1D splitting via dimensional projection, shown with tight-binding and first-principles methods.
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Intrinsic antiferromagnetic half-metal and topological phases from the ferrovalley states of the sliding bilayer altermagnets
Sliding bilayer altermagnets host antiferromagnetic half-metallicity and Chern insulator phases via spin-dependent interlayer hopping in ferrovalley states, demonstrated in V2OSSe by first-principles calculations.
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Chiral-Angle-Controlled Altermagnetic Spin Splitting in Nanotubes
Rolling 2D d-wave altermagnets into nanotubes converts momentum-dependent spin splitting into chiral-angle-controlled 1D splitting via dimensional projection, shown with tight-binding and first-principles methods.