English

Quasiparticle mass enhancement approaching optimal doping in a high-Tc superconductor

Superconductivity 2015-03-30 v2 Strongly Correlated Electrons

Abstract

In the quest for superconductors with high transition temperatures (Tc_\mathrm{c}s), one emerging motif is that unconventional superconductivity is enhanced by fluctuations of a broken-symmetry phase near a quantum-critical point. While recent experiments have suggested the existence of the requisite broken symmetry phase in the high-Tc_\mathrm{c} cuprates, the signature of quantum-critical fluctuations in the electronic structure has thus far remained elusive, leaving their importance for high-Tc_\mathrm{c} superconductivity in question. We use magnetic fields exceeding 90 tesla to access the underlying metallic state of the cuprate YBa2Cu3O6+δ_\delta over an unprecedented range of doping, and magnetic quantum oscillations reveal a strong enhancement in the quasiparticle effective mass toward optimal doping. This mass enhancement is a characteristic signature of quantum criticality, and identifies a quantum-critical point at pcrit_{crit} \approx 0.18. This point also represents the juncture of the vanishing pseudogap energy scale and the disappearance of Kerr rotation, the negative Hall coefficient, and the recently observed charge order, suggesting a mechanism of high-Tc_\mathrm{c} that is strongest when these definitive experimental signatures of the underdoped cuprates converge at a quantum critical point.

Keywords

Cite

@article{arxiv.1409.3990,
  title  = {Quasiparticle mass enhancement approaching optimal doping in a high-Tc superconductor},
  author = {B. J. Ramshaw and S. E. Sebastian and R. D. McDonald and James Day and B. S. Tan and Z. Zhu and J. B. Betts and Ruixing Liang and D. A. Bonn and W. N. Hardy and N. Harrison},
  journal= {arXiv preprint arXiv:1409.3990},
  year   = {2015}
}

Comments

4 figures. Supplementary info (15 figures). Science. Published online 26 March 2015