Collective wave Excitonic Modes in the Fe-Superconductors
arXiv:0904.1973 · doi:10.1103/PhysRevB.80.140512
Abstract
Calculations of the pairing interaction in multi-band models of the Fe superconductors show that it is attractive in both the (s-wave) and (d-wave) channels. This raises the possibility that these materials may have collective excitonic modes. Here, assuming an s-wave groundstate, we investigate the d-wave collective excitonic mode and its coupling to the Raman scattering.
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References in corpus (8)
- Unconventional sign-reversing superconductivity in LaFeAsO_(1-x)F_x
- Unconventional pairing originating from disconnected Fermi surfaces in superconducting LaFeAsOF}
- Near-degeneracy of several pairing channels in multiorbital models for the Fe-pnictides
- Inelastic Light Scattering From Correlated Electrons
- Pairing State with a time-reversal symmetry breaking in FeAs based superconductors
- Antiferromagnetic Correlation and the Pairing Mechanism of the Cuprates and Iron Pnictides : a View From the Functional Renormalization Group Studies
- Theory of Raman response in a superconductor with extended s-wave symmetry: Application to Fe-pnictides
- Probing the pairing symmetry of the iron pnictides with electronic Raman scattering
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