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Electronic Raman scattering in CuO2 superconductors
Authors:R. Hackl  M. Opel  P. F. Müller  G. Krug  B. Stadlober  R. Nemetschek  H. Berger  L. Forró
Affiliation:(1) Walther Meissner Institut, Bayerische Akademie der Wissenschaften, D-85748 Garching;(2) École Polytechnique Fédérale de Lausanne, Écublens, CH-1015 Lausanne
Abstract:Experimental results for the electronic Raman effect in differently doped cuprate superconductors will be presented. We show that the B2g-symmetry data are generally closely related to ordinary transport and are therefore most likely originating from the carriers, while the response at B1g symmetry cannot be assigned to a specific type of excitations. In the superconducting state the B2g pair breaking peaks scale with the transition temperature over a wide doping range. All results consistently suggest a strong anisotropy of the gap and can be modeled by assuming
$$d_{x^2  - y^2 }$$
symmetry for the order parameter.
Keywords:
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