Raman detection of the superconducting gap in Ba-Y-Cu-O superconductors

Abstract
We have utilized an iodine absorption cell to enable detailed Raman studies at low frequency (down to 15 cm1) in a thin film of the high-temperature superconductor Ba2YCu3 O7. Subtraction of spectra just above and well into the superconducting phase reveals a weak broad feature (maximum near 400 cm1, half width at half maximum approximately 250 cm1), which we tentatively interpret as due to scattering near the superconducting gap. The large width of the feature may be partially related to smearing of the transition, or to gap anisotropy. Its onset near 200 cm1 suggests an energy gap 2Δ near 25 meV. Assuming that the surface region probed in the scattering has the same Tc as that measured for the overall film (onset 85 K), we obtain the ratio r=2ΔkBTc=3.4±1.5, consistent with the BCS weak-coupling value of 3.5.