Raman optical activity is observed in ferroaxial NiTiO3 and originates from the ferroaxial order even within the electric dipole approximation.
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The work identifies a quantum-geometric shift of quasiequilibrium, arising from finite wave-packet spread during relaxation, as the origin of nonreciprocal current driven by the quantum-metric dipole.
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Raman Optical Activity Induced by Ferroaxial Order in NiTiO$_3$
Raman optical activity is observed in ferroaxial NiTiO3 and originates from the ferroaxial order even within the electric dipole approximation.
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Quantum-geometric shift of quasiequilibrium: Origin of nonreciprocal current driven by quantum-metric dipole
The work identifies a quantum-geometric shift of quasiequilibrium, arising from finite wave-packet spread during relaxation, as the origin of nonreciprocal current driven by the quantum-metric dipole.