paper

Revisiting the symmetry and optical phonons of altermagnetic -MnTe

arXiv:2603.06460 · doi:10.1103/5hjw-f341

Abstract

Using infrared (IR) and Raman spectroscopies combined with high-resolution x-ray diffraction, we address several controversial aspects of altermagnetic -MnTe. We show that mechanical stress applied to crystals of this material causes a drastic broadening of Bragg peaks that conceals signatures of additional phases present in the sample. Indeed, spatially resolved Raman spectroscopy reveals that the modes around 175 cm often reported in -MnTe are not reproducible across different positions and samples and originate from the secondary phase of MnTe. By combining spectroscopic probes with ab initio calculations, we establish the IR-active optical phonon of -MnTe around 155 cm () and the Raman-active optical phonon around 100 cm () at room temperature. Two intense Raman modes around 120 and 140 cm are shown to be intrinsic, even though they can not be assigned to -point optical phonons. These modes couple to magnetic order in -MnTe and also to the transient reflectivity resulting in coherent oscillations. Both 6-fold rotation symmetry and inversion symmetry are preserved in -MnTe within our experimental resolution.

9 pages, 7 figures

Revisiting the symmetry and optical phonons of altermagnetic $α$-MnTe · wovepaper