paper

Exploring the Dark Side of Cuprate Superconductors: s-wave Symmetry of the Pseudogap

arXiv:1207.5070 · doi:10.1103/PhysRevLett.111.107001

Abstract

We reveal the full energy-momentum structure of the pseudogap of underdoped high-Tc cuprate superconductors. Our combined theoretical and experimental analysis explains the spectral-weight suppression observed in the B2g Raman response at finite energies in terms of a pseudogap appearing in the single-electron excitation spectra above the Fermi level in the nodal direction of momentum space. This result suggests an s-wave pseudogap (which never closes in the energy-momentum space), distinct from the d-wave superconducting gap. Recent tunneling and photoemission experiments on underdoped cuprates also find a natural explanation within the s-wave-pseudogap scenario.

9 pages, 10 figures (including Supplementary Information)

Exploring the Dark Side of Cuprate Superconductors: s-wave Symmetry of the Pseudogap · wovepaper