English

Atomistic theory of the phonon angular momentum Hall effect

Materials Science 2026-04-03 v1

Abstract

The spin and orbital Hall effects convert longitudinal charge currents into transverse flows of electronic angular momentum. Here we develop an atomistic theory of the recently proposed lattice-vibrational analogue, in which a longitudinal heat current driven by a thermal gradient is converted into a transverse current of phonon angular momentum. We derive a microscopic real-space expression for this current and show that it originates from thermally induced mixing of polarized vibrational motion, leading to a characteristic edge accumulation of phonon angular momentum. We demonstrate the effect in minimal square- and honeycomb-lattice models and compute the resulting phonon angular momentum accumulations for a range of example materials using input from first-principles calculations. Our results confirm that the phonon angular momentum Hall effect is a universal response of crystalline solids and our framework is generically applicable to all materials.

Keywords

Cite

@article{arxiv.2604.01899,
  title  = {Atomistic theory of the phonon angular momentum Hall effect},
  author = {Daniel A. Bustamante Lopez and Verena Brehm and Dominik M. Juraschek},
  journal= {arXiv preprint arXiv:2604.01899},
  year   = {2026}
}
R2 v1 2026-07-01T11:50:47.533Z