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Why the superfluid density tracks $T_{\rm c}$ in cuprate superconductors?

Superconductivity 2021-02-24 v1

Abstract

One of the first finding concerning the superconducting (SC) density nscn_{\rm sc} in cuprates was their small magnitudes that revealed the importance of phase fluctuations. More recently, measurements in a variety of overdoped cuprates indicate that it is also much smaller than expected from BCS theories and falls smoothly to zero as doping is increased. We explain these observations by an electronic phase separation theory with a Ginzburg-Landau potential VGLV_{\rm GL} that produces alternating charge domains whose fluctuations lead to localized SC order parameters that are connected by Josephson coupling EJE_{\rm J}. The average <EJ(p,T)>{\left <E_{\rm J}( p,T)\right>} is proportional to the local superfluid phase stiffness ρscnsc\rho_{\rm sc} \propto n_{\rm sc}. The fraction of condensed carriers decreases in the overdoped region due to the weakening of VGLV_{\rm GL}. The results agreed with ρsc(p)\rho_{\rm sc}(p) vs. Tc(p)T_{\rm c}(p) and the Drude-like peak measurements.

Keywords

Cite

@article{arxiv.2001.07249,
  title  = {Why the superfluid density tracks $T_{\rm c}$ in cuprate superconductors?},
  author = {E. V. L. de Mello},
  journal= {arXiv preprint arXiv:2001.07249},
  year   = {2021}
}

Comments

5 pages, 5 figures