Unconventional proximity effects and pairing symmetries in cuprates caused by conventional phonons

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Giant and nil proximity effects and unconventional symmetry of cuprate superconductors are explained as a result of the strong Froehlich interaction of holes with c-axis polarised optical phonons acting together with an anisotropic nonlocal deformation potential.
2 pages, 1 figure, extended abstract of the invited contribution to the international symposium on High Temperature Superconductivity in Cuprates: Original Concept and New Developments, Tbilisi, Georgia, 7-12 October, 2007

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