Chiral phonons in polar LiNbO3

Resonant inelastic x-ray scattering reveals that lattice vibrations can be chiral in a polar material, with phonons having opposite handedness depending on their direction in momentum space.

Sketch of reciprocal space showing regions where opposite-handed chiral phonons exist in LiNbO3, which can be probed by circularly polarized x-ray photons in a resonant inelastic x-ray scattering.

Collective lattice excitations called phonons and their symmetry classification are of fundamental importance for physical processes such as transport phenomena and phase transitions. Recent studies have introduced chirality as an additional degree of freedom in lattice vibrations, which is of special interest because chiral phonons carry angular momentum and therefore intrinsically break time-reversal symmetry. Here, we directly prove the presence of chiral phonons in a prototypical polar LiNbO3 crystal. Our demonstration of chiral phonons in a ferroelectric enables in-situ electrical control of momentum-dependent “magnetic” polarization with reversible phonon handedness, i.e., dynamical multiferroicity. This ferroic control of phonon chirality has substantial potential in the emerging field of chiral phononics, particularly for controlling phonon angular momentum. 

Dr. Hiroki Ueda
PSI Center for Photon Science
Forschungsstrasse 111, 5232 Villigen PSI, Switzerland

+41 56 310 3490
hiroki.ueda@psi.ch 

Dr. Urs Staub
PSI Center for Photon Science
Forschungsstrasse 111, 5232 Villigen PSI, Switzerland

+41 56 310 4494
urs.staub@psi.ch

Chiral phonons in polar LiNbO3
Hiroki Ueda, Abhishek Nag, Carl P. Romao, Mirian García-Fernández, Ke-Jin Zhou, and Urs Staub
Nature Communications (2025), DOI: https://doi.org/10.1038/s41467-025-66911-5 (link is external)