English

Exciton-activated effective phonon magnetic moment in monolayer MoS2

Materials Science 2024-04-25 v2

Abstract

Optical excitation of chiral phonons plays a vital role in studying the phonon-driven magnetic phenomena in solids. Transition metal dichalcogenides host chiral phonons at high symmetry points of the Brillouin zone, providing an ideal platform to explore the interplay between chiral phonons and valley degree of freedom. Here, we investigate the helicity-resolved magneto-Raman response of monolayer MoS2 and identify a doubly degenerate Brillouin-zone-center chiral phonon mode at ~270 cm-1. Our wavelength- and temperature-dependent measurements show that this chiral phonon is activated through the resonant excitation of A exciton. Under an out-of-plane magnetic field, the chiral phonon exhibits giant Zeeman splitting, which corresponds to an effective magnetic moment of ~2.5mu_B. Moreover, we carry out theoretical calculations based on the morphic effects in nonmagnetic crystals, which reproduce the linear Zeeman splitting and Raman cross-section of the chiral phonon. Our study provides important insights into lifting the chiral phonon degeneracy in an achiral covalent material, paving a new route to excite and control chiral phonons.

Keywords

Cite

@article{arxiv.2403.15347,
  title  = {Exciton-activated effective phonon magnetic moment in monolayer MoS2},
  author = {Chunli Tang and Gaihua Ye and Cynthia Nnokwe and Mengqi Fang and Li Xiang and Masoud Mahjouri-Samani and Dmitry Smirnov and Eui-Hyeok Yang and Tingting Wang and Lifa Zhang and Rui He and Wencan Jin},
  journal= {arXiv preprint arXiv:2403.15347},
  year   = {2024}
}