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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Exfoliation of NiGa₂S₄ to few layers with AFM, Raman, and optical characterization confirming a ~1.5 eV Mott gap that increases slightly below 10 layers, plus proximity-doping analysis.
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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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Exfoliation and Optical Properties of S=1 Triangular Lattice Antiferromagnet NiGa$_2$S$_4$
Exfoliation of NiGa₂S₄ to few layers with AFM, Raman, and optical characterization confirming a ~1.5 eV Mott gap that increases slightly below 10 layers, plus proximity-doping analysis.