We present a theoretical framework for understanding the behavior of the normal and superconducting states of overdoped cuprate high temperature superconductors in the vicinity of the doping-tuned quantum superconductor-to-metal transition. The key ingredients on which we focus are d-wave pairing, a flat antinodal dispersion, and disorder. Even for homogeneous disorder, these lead to effectively granular superconducting correlations and a superconducting transition temperature determined in large part by the superfluid stiffness rather than the pairing scale.
CITATION STYLE
Li, Z. X., Kivelson, S. A., & Lee, D. H. (2021). Superconductor-to-metal transition in overdoped cuprates. Npj Quantum Materials, 6(1). https://doi.org/10.1038/s41535-021-00335-4
Mendeley helps you to discover research relevant for your work.