Pairing Symmetry Studied from Impurity Effects in the Undoped Superconductor T'-LaEuCuO
arXiv:1607.07953 · doi:10.7566/JPSJ.85.093703
Abstract
We have investigated the effects of magnetic Ni and nonmagnetic Zn impurities on the superconductivity in undoped T'-LaEuCuO (T'-LECO) with the NdCuO-type structure, using the polycrystalline bulk samples, to clarify the pairing symmetry. It has been found that both suppression rates of the superconducting transition temperature by Ni and Zn impurities are nearly the same and are very similar to those in the optimally doped and overdoped regimes of hole-doped T-LaSrCuO with the KNiF-type structure. These results strongly suggest that the superconductivity in undoped T'-LECO is of the -wave symmetry and is mediated by the spin fluctuation.
13 pages, 4 figures, accepted for publication in Journal of the Physical Society of Japan
References in corpus (4)
Cited by in corpus (4)
- Novel Electronic State and Superconductivity in the Electron-Doped High-Tc T'-Superconductors
- Electron-Doping Effect on Tc in the Undoped (Ce-Free) Superconductor T'-La1.8Eu0.2CuO4 Studied by the Fluorine Substitution for Oxygen
- Electronic State of T'-PrLaCeCuO () Studied by Compton Scattering
- Cu-spin Correlation in the Electron-overdoped High-Tc Cuprate Thin Films of La_2-x_Ce_x_CuO_4_ Probed by Low-energy Muons