Theory of Raman response in a superconductor with extended s-wave symmetry: Application to Fe-pnictides

Abstract

We argue that Raman study of Fe-pnictides is a way to unambiguously distinguish between various superconducting gaps proposed for these materials. We show that A1g Raman intensity has a true resonance peak below 2 for extended s-wave superconducting gap, (k) = ( kx + ky)/2 in the folded Brillouin zone. No such peak emerges for a pure s-wave gap, a d-wave gap, and another extended s-wave gap with (k) = kx2 ky2 proposed by several groups.

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