paper

Soft Phonon Charge-Density Wave Formation in the Kagome Metal KVSb

arXiv:2510.20230 · doi:10.1103/lhfz-7tk1

Abstract

A range of of unusual emergent behaviors have been reported in the charge-density wave (CDW) state of the VSb (K, Rb, Cs) kagome metals, including a CDW formation process without soft phonons, which points to an unconventional CDW mechanism. Here, we use inelastic x-ray scattering to show that the CDW in KVSb forms via phonons that soften to zero energy at the CDW ordering vector (-point) around ~K. The intensity of soft phonons exhibit a remarkable in-plane anisotropy, extending over a much larger momentum range along - relative to -, which leads to diffuse scattering common among VSb. Using first-principles calculations, we find that the momentum-dependent electron-phonon coupling (EPC) is peaked at and exhibits the same in-plane anisotropy as the phonon softening. Conversely, the electronic susceptibility is not peaked at and shows the opposite in-plane anisotropy. Our findings favor momentum-dependent EPC as the driving mechanism of the CDW in KVSb, with a CDW formation process similar to that of transition metal dichalcogenides.

accepted version for PRL