Superconducting energy gap versus pseudogap in hole-doped cuprates as revealed by infrared spectroscopy
arXiv:1308.6170 · doi:10.1103/PhysRevB.88.184507
Abstract
We present in-plane infrared reflectance measurement on two superconducting cuprates with relatively low T: a nearly optimally-doped BiSrLaCuO with T=33 K and an underdoped LaSrCuO with T=30 K. The measurement clearly reveals that the superconducting energy gap is distinct from the pseudogap. They have different energy scales and appear at different temperatures. The results suggest that the pseudogap is not a precursor to the superconducting state. The data also challenge the longstanding viewpoint that the superconductivity within the ab-plane is in the clean limit and the superconducting pairing energy gap could not be detected by in-plane infrared spectroscopy.
5 pages, 4 figures
References in corpus (7)
- Direct observation of competition between superconductivity and charge density wave order in YBa2Cu3Oy
- Distinct Fermi-Momentum Dependent Energy Gaps in Deeply Underdoped Bi2212
- Two Energy Scales and two Quasiparticle Dynamics in the Superconducting State of Underdoped Cuprates
- X-ray diffraction observation of charge density wave order at zero magnetic field in ortho-II YBaCuO
- Scaling of the superfluid density in high-temperature superconductors
- Optical study of the charge-density-wave mechanism in 2-TaS and NaTaS
- Optical determination of the superconducting energy gap in electron-doped Pr_{1.85}Ce_{0.15}CuO_4