PT-symmetric antiferromagnets support antiferro-chiral phonons whose sublattice-staggered angular momentum couples to the Neel vector via molecular Berry curvature.
Alter- axial phonons in collinear magnets
4 Pith papers cite this work. Polarity classification is still indexing.
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Zero-field chiral phonons with g-wave phonon angular momentum emerge in altermagnetic CrSb from relativistic magnon-phonon hybridization, enabling anomalous spin and PAM Nernst effects.
Monolayer CuF2 exhibits directionally complementary chiral magnons and cycloidal phonons under P2_1/c symmetry with quantized magnon Chern numbers ±2.
Structural alter-phononics establishes sublattice-momentum locking in phonon dynamics of nonmagnetic crystals through symmetry rules involving alter-generators and absence of equipartition constraints.
citing papers explorer
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Antiferro-Chiral Phonons in $\mathcal{P}\mathcal{T}$-Symmetric Antiferromagnets
PT-symmetric antiferromagnets support antiferro-chiral phonons whose sublattice-staggered angular momentum couples to the Neel vector via molecular Berry curvature.
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Symmetry-Enforced Chiral Phonons in Altermagnets via Magnon-Phonon Coupling
Zero-field chiral phonons with g-wave phonon angular momentum emerge in altermagnetic CrSb from relativistic magnon-phonon hybridization, enabling anomalous spin and PAM Nernst effects.
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Chiral Magnons and Cycloidal Phonons in Altermagnetic CuF$_{2}$ Monolayer
Monolayer CuF2 exhibits directionally complementary chiral magnons and cycloidal phonons under P2_1/c symmetry with quantized magnon Chern numbers ±2.
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Structural Alter-Phononics: Sublattice-Momentum Locking in Spinless Lattice Dynamics
Structural alter-phononics establishes sublattice-momentum locking in phonon dynamics of nonmagnetic crystals through symmetry rules involving alter-generators and absence of equipartition constraints.