Coupling trilayer TI film with z-oriented d-wave altermagnet gaps helical edges while preserving two Weyl points, yielding 2D higher-order Weyl semimetals with corner states.
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4 Pith papers cite this work. Polarity classification is still indexing.
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UNVERDICTED 4representative citing papers
A triple-Q 12-sublattice collinear state on the J3-dominant kagome antiferromagnet realizes compensated ferrimagnetism with s-wave spin splittings in magnon and electron bands without net magnetization or crystal asymmetry.
Fe-based superconductors with coplanar magnetic order realize an odd-parity magnetic state featuring k_z-polarized spins with h-wave splitting and finite Berry curvature but vanishing Edelstein effect in the absence of spin-orbit coupling.
V2O-based altermagnets enable robust spin-polarized specular Andreev reflection in superconductor junctions, detectable via nonlocal conductance in a multiterminal geometry.
citing papers explorer
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Two-dimensional higher-order Weyl semimetals
Coupling trilayer TI film with z-oriented d-wave altermagnet gaps helical edges while preserving two Weyl points, yielding 2D higher-order Weyl semimetals with corner states.
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Triple-${\bf Q}$ collinear state with compensated ferrimagnetic nature on frustrated kagome lattice
A triple-Q 12-sublattice collinear state on the J3-dominant kagome antiferromagnet realizes compensated ferrimagnetism with s-wave spin splittings in magnon and electron bands without net magnetization or crystal asymmetry.
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Odd-Parity Magnetism in Fe-Based Superconductors
Fe-based superconductors with coplanar magnetic order realize an odd-parity magnetic state featuring k_z-polarized spins with h-wave splitting and finite Berry curvature but vanishing Edelstein effect in the absence of spin-orbit coupling.
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Robust realization of spin-polarized specular Andreev reflection in V$_2$O-based altermagnets
V2O-based altermagnets enable robust spin-polarized specular Andreev reflection in superconductor junctions, detectable via nonlocal conductance in a multiterminal geometry.