English

Electron-phonon-dominated charge-density-wave fluctuations in TiSe$_2$ accessed by ultrafast nonequilibrium dynamics

Strongly Correlated Electrons 2026-02-11 v3

Abstract

The complex phase diagram of 1T-TiSe2 consists of a charge density wave (CDW) below 200 K, and CDW fluctuations of still unknown origin at higher temperatures. Here, we use time-resolved extreme ultraviolet momentum microscopy and density functional perturbation theory to uncover the formation mechanism of CDW fluctuations and their spectral features at 295 K. We investigated the transient dynamics of fluctuations upon nonresonant ultrafast photoexcitation, and directly correlate it with the CDW soft-phonon hardening. Surprisingly, our results show that the coherent amplitude mode modulating ultrafast CDW recovery persists above TCDW, and reveal that CDW fluctuations are dominated by the electron-phonon interaction rather than excitonic correlations as commonly believed. Our findings on these microscopic CDW fluctuations clarify the complex interplay between electronic and lattice degrees of freedom at elevated temperatures and, therefore, could be useful in understanding the nature of the CDW phase transition in 1T-TiSe2 and similar quantum materials.

Keywords

Cite

@article{arxiv.2507.12430,
  title  = {Electron-phonon-dominated charge-density-wave fluctuations in TiSe$_2$ accessed by ultrafast nonequilibrium dynamics},
  author = {Sotirios Fragkos and Hibiki Orio and Nina Girotto Erhardt and Akib Jabed and Sarath Sasi and Quentin Courtade and Muthu P. T. Masilamani and Maximilian Ünzelmann and Florian Diekmann and Baptiste Hildebrand and Dominique Descamps and Stéphane Petit and Fabio Boschini and Ján Minár and Yann Mairesse and Friedrich Reinert and Kai Rossnagel and Dino Novko and Samuel Beaulieu and Jakub Schusser},
  journal= {arXiv preprint arXiv:2507.12430},
  year   = {2026}
}