English

Critical photoinduced reflectivity relaxation dynamics in single-layer Bi-based cuprates near the pseudogap end point

Superconductivity 2025-09-01 v1 Strongly Correlated Electrons

Abstract

A comprehensive study of photoinduced transient reflectivity dynamics in heavily overdoped single-layer cuprate (Bi,Pb)2_{2}Sr2_{2}CuO6+δ_{6+\delta} (Pb-Bi2201), across the end points of the pseudogap and superconducting phases, has been conducted using optical ultrafast time-resolved pump-probe spectroscopy. In the Pb-Bi2201 just before reaching the pseudogap end point, the transient reflectivity dynamics above TcT_{{\rm c}} resemble the pseudogap response observed in optimally doped La-Bi2201. At low temperatures, however, the relaxation time exhibits a power-law divergence, τ10/kBT\tau\sim10\hbar/k_{\mathrm{B}}T, signaling quantum critical behavior at the pseudogap end point doping. A similar power-law increase in relaxation time is also observed in Pb-Bi2201 just beyond the pseudogap doping end point, though it is less pronounced.

Keywords

Cite

@article{arxiv.2508.21298,
  title  = {Critical photoinduced reflectivity relaxation dynamics in single-layer Bi-based cuprates near the pseudogap end point},
  author = {T. Shimizu and R. Tobise and T. Kurosawa and S. Tsuchiya and M. Oda and Y. Toda and V. V. Kabanov and D. Mihailovic and T. Mertelj},
  journal= {arXiv preprint arXiv:2508.21298},
  year   = {2025}
}