A minimal 2D d-wave altermagnetic model with band inversion realizes a ferroelectrically tunable Chern insulator with spontaneous spin canting, enabling C = ±1 and ±2 phases via Berry-curvature reorganization.
Dominant orbital magnetization in the prototypical altermagnet
3 Pith papers cite this work. Polarity classification is still indexing.
years
2026 3verdicts
UNVERDICTED 3representative citing papers
Orbital chiral flux breaks a hidden antiunitary symmetry in a coplanar kagome altermagnet, activating Berry curvature and Hall conductivity in the complete absence of spin-orbit coupling.
Polar distortions induced by surface symmetry breaking or electric fields substantially modify the anomalous Hall conductivity in alpha-MnTe.
citing papers explorer
-
Berry-Curvature Activation by Orbital Flux in a Kagome Altermagnet
Orbital chiral flux breaks a hidden antiunitary symmetry in a coplanar kagome altermagnet, activating Berry curvature and Hall conductivity in the complete absence of spin-orbit coupling.
-
Effect of polar distortions on the anomalous Hall conductivity of altermagnetic $\alpha$-MnTe
Polar distortions induced by surface symmetry breaking or electric fields substantially modify the anomalous Hall conductivity in alpha-MnTe.