Non-Fermi liquid quasiparticles in strain-tuned Sr2RuO4
Abstract
Interacting electrons can form metallic states beyond the Fermi liquid paradigm, a conceptual frontier of many-body physics mainly explored via bulk thermodynamics and transport. In contrast, the microscopics of anomalous single-particle excitations underlying non-Fermi liquid properties have largely remained in the dark. Here we spectroscopically map such quantum-critical excitations in SrRuO under uniaxial pressure, an experimental challenge overcome by technical advances combining focused ion beam micro-milling with laser angle resolved photoemission. We show that quasiparticle excitations acquire a non-Fermi liquid scattering rate near the critical point but remain remarkably robust throughout the transition. These experiments serve as a benchmark for the theory of anomalous metals and settle the long-standing question if quantum-critical systems host quasiparticle excitations.
Keywords
Cite
@article{arxiv.2503.11311,
title = {Non-Fermi liquid quasiparticles in strain-tuned Sr2RuO4},
author = {A. Hunter and C. Putzke and F. B. Kugler and S. Beck and E. Cappelli and F. Margot and M. Straub and Y. Alexanian and J. Teyssier and A. de la Torre and K. W. Plumb and M. D. Watson and T. K. Kim and C. Cacho and N. C. Plumb and M. Shi and M. Radovic and J. Osiecki and C. Polley and D. A. Sokolov and A. P. Mackenzie and E. Berg and A. Georges and P. J. W. Moll and A. Tamai and F. Baumberger},
journal= {arXiv preprint arXiv:2503.11311},
year = {2025}
}
Comments
Supplementary material available on request