Evolution of charge-density-wave soft phonon modes in $\mathrm{Pd}_x\mathrm{ErTe}_3$
Abstract
We investigated the lattice dynamics of quasi-two-dimensional Pd-intercalated in relation to its charge-density-wave (CDW) transitions by means of x-ray diffuse and meV-resolution inelastic x-ray scattering. In pristine , CDW order develops at orthogonal in-plane wave vectors (the ) and (the ), with transition temperatures K and K, respectively. Remarkably, we observe diffuse x-ray scattering already near the higher transition temperature along but at a slightly different wave vector . Inelastic x-ray scattering for shows that a partial phonon softening at , underscoring the strong competition between ordering tendencies along the nearly equivalent in-plane axes of the orthorhombic lattice. For intercalation levels , the state is suppressed. Nevertheless, a similar correlation between phonon softening and diffuse scattering persists along the direction, again observed at and . These findings suggest that the is fully suppressed for , and that the residual diffuse scattering at originates from the partial phonon softening associated with the , reflected by the near equality of the absolute size of and .
Cite
@article{arxiv.2512.18472,
title = {Evolution of charge-density-wave soft phonon modes in $\mathrm{Pd}_x\mathrm{ErTe}_3$},
author = {Avishek Maity and Stephan Rosenkranz and Raymond Osborn and Rolf Heid and Ayman H. Said and Ahmet Alatas and Joshua A. W. Straquadine and Matthew J. Krogstad and Anisha G. Singh and Ian R. Fisher and Frank Weber},
journal= {arXiv preprint arXiv:2512.18472},
year = {2026}
}
Comments
10 pages, 5 figures