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arXiv 2002-05-24 DOI 10.1103/PhysRevB.68.024520 0 views

The Cuprate Pseudogap: Competing Order Parameters or Precursor Superconductivity

Stajic, Jelena · Iyengar, Andrew · Levin, K. · Boyce, B. R. · Lemberger, T.

Original · EN

In this paper we compare two broad classes of theories for the pseudogap in cuprate superconductors. The comparison in made in reference to measurements of the superfluid density, ρₛ(T,x), in YBa₂CuO₇₋ δ films having a wide range of stoichiometries, δ, or, hole doping, x. The theoretical challenge raised by these (and previous) data is to understand why the T-dependence of ρₛ(T,x) is insensitive to the fermionic excitation gap Δ(T,x), which opens in the normal state and persists into the superconducting state, when presumably ρₛ(T) is governed, at least in part, by fermionic excitations. Indeed, ρₛ(T,x) seems to have a BCS-like dependence on Tc(x), which, although not unexpected, is not straightforward to understand in pseudogapped superconductors where Tc(x) and the excitation gap have little in common. Here, we contrast "extrinsic" and "intrinsic" theoretical approaches to the pseudogap and argue that the former (for example, associated with a competing order parameter) exhibits more obvious departures from BCS-like T dependences in ρₛ(T) than approaches which associate the pseudogap with the superconductivity itself. Examples of the latter are Fermi liquid based schemes as well as a pair fluctuation mean field theory. Thus far, the measured behavior of the superfluid density appears to argue against an extrinsic interpretation of the pseudogap, and supports instead its intrinsic origin.

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