On the origin of the A1g and B1g electronic Raman scattering peaks in the superconducting state of YBa2Cu3O7-δ
H. Martinho, A. A. Martin, C. Rettori, C. T. Lin, C. Bernhard
Abstract
The electronic Raman scattering has been investigated in optimally oxygen doped YBa2Cu3O7-δ single crystals as well as in crystals with non-magnetic, Zn, and magnetic, Ni, impurities. We found that the intensity of the A1g peak is impurity independent and their energy to Tc ratio is almost constant (2Δ/kBTc5). Moreover, the signal at the B1g channel is completely smeared out when non-magnetic Zn impurities are present. These results are qualitatively interpreted in terms of the Zeyher and Greco's theory that relates the electronic Raman scattering in the A1g and B1g channels to d-CDW and superconducting order parameters fluctuations, respectively.
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