Absence of Acoustic Phonon Anomaly in a Kagome Metal with Short-ranged Structural Modulation
arXiv:2410.16465
Abstract
Kagome lattice VSb ( = K, Rb, and Cs) superconductors without magnetism from vanadium -electrons are intriguing because they have a novel charge density wave (CDW) order around 90 K and display superconductivity at 3 K that competes with the CDW order. Recently, CsCrSb, isostructural to VSb, was found to have concurrent structural and magnetic phase transition at 55 K that can be suppressed by pressure to induce superconductivity [Liu \textit{et al.}, \href{https://doi.org/10.1038/s41586-024-07761-x}{Nature \textbf{632}, 1032 (2024)}]. Here, we use elastic and inelastic X-ray scattering to study the microscopic origin of the structural transition in CsCrSb. Although our elastic measurements confirm the 411 superlattice order below , its underlying correlation is rather short-ranged. Moreover, our inelastic measurements at the superlattice wavevectors around (3, 0, 0) find no evidence of a significant acoustic phonon anomaly below , similar to the case of VSb. The absence of acoustic phonon anomaly indicates a weak electron-phonon coupling in CsCrSb, suggesting that the structural transition is likely associated with an unconventional CDW order.
Six pages, four figures