Relativistic altermagnets exhibit mixed g-, d-, and p-wave spin-momentum locking with symmetry-protected nodal planes and accidental nodal surfaces depending on Néel vector orientation.
and Shao, F
3 Pith papers cite this work. Polarity classification is still indexing.
fields
cond-mat.mtrl-sci 3years
2026 3verdicts
UNVERDICTED 3representative citing papers
Py/BTO/LSMO heterostructures enable room-temperature voltage tuning of anomalous Hall effect via ferroelectric polarization coupling to interfacial magnetism, achieving 93% modulation and Rashba splitting per DFT.
Polar distortions induced by surface symmetry breaking or electric fields substantially modify the anomalous Hall conductivity in alpha-MnTe.
citing papers explorer
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Symmetry-protected nodal planes and accidental nodal surfaces in mixed odd-even wave spin-momentum locking of relativistic altermagnets
Relativistic altermagnets exhibit mixed g-, d-, and p-wave spin-momentum locking with symmetry-protected nodal planes and accidental nodal surfaces depending on Néel vector orientation.
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Room-Temperature Electric-Field Control of Anomalous Hall Effect in Py/BTO/LSMO Heterostructures
Py/BTO/LSMO heterostructures enable room-temperature voltage tuning of anomalous Hall effect via ferroelectric polarization coupling to interfacial magnetism, achieving 93% modulation and Rashba splitting per DFT.
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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.