Nonadiabatic theory of phonon magnetic moments separates Fermi-sea and surface terms, reduces to adiabatic limit in gapped systems at low frequency, and reproduces experimental magnitudes in PbSnTe via Fermi-surface enhancement.
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First-principles calculations identify a C2/m intermediate phase linking achiral Immm and chiral C2 structures in NbOX2, with electric fields shown to lift enantiomer degeneracy for selective handedness control.
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Nonadiabatic Theory of Phonon Magnetic Moments in Insulators and Metals
Nonadiabatic theory of phonon magnetic moments separates Fermi-sea and surface terms, reduces to adiabatic limit in gapped systems at low frequency, and reproduces experimental magnitudes in PbSnTe via Fermi-surface enhancement.
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Emergent chirality and enantiomeric selectivity in layered NbOX$_2$ crystals
First-principles calculations identify a C2/m intermediate phase linking achiral Immm and chiral C2 structures in NbOX2, with electric fields shown to lift enantiomer degeneracy for selective handedness control.