English

Chiral Phonons Enhance Ferromagnetism

Materials Science 2025-04-15 v1 Chemical Physics

Abstract

Recent experiments suggest that the conditions for ferromagnetic order in, e.g., magnetite, can be modified by adsorption of chiral molecules. Especially, the coercivity of magnetite was increased by nearly 100 \%, or 20 times the earth magnetic flux density, at room temperature. The coercivity was, moreover, demonstrated to increase linearly with temperature in a finite range around room temperature. Based on these results, a mechanism is proposed for providing the necessary enhancement of the magnetic anisotropy. It is shown that nuclear vibrations (phonons) coupled to ferromagnetic spin excitations (magnons) absorb the thermal energy in the system, thereby diverting the excess energy that otherwise would excite magnons in the ferromagnet. This energy diversion, not only restores the ferromagnetic order but also enhances its stability by increasing the anisotropy energy for magnon excitations. The coupling between phonons with magnons is enabled by chirality due to the lack of inversion symmetry.

Keywords

Cite

@article{arxiv.2412.13787,
  title  = {Chiral Phonons Enhance Ferromagnetism},
  author = {Jonas Fransson and Yael Kapon and Lilach Brann and Shira Yochelis and Dimitar D. Sasselov and Yossi Paltiel and S. Furkan Ozturk},
  journal= {arXiv preprint arXiv:2412.13787},
  year   = {2025}
}
R2 v1 2026-06-28T20:40:23.153Z