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Unconventional superconductivity and interaction induced Fermi surface reconstruction in the two-dimensional Edwards
Dai-Ning Cho1, Jeroen van den Brink1, Holger Fehske2
1IFW Dresden, P.O. Box 270116, 01171 Dresden, Germany.
Abstract:
We study the competition between unconventional superconducting pairing and charge density wave (CDW) formation for the two-dimensional Edwards Hamiltonian at half filling, a very general two-dimensional transport model in which fermionic charge carriers couple to a correlated background medium. Using the projective renormalization method we find that a strong renormalization of the original fermionic band causes a new hole-like Fermi surface to emerge near the center of the Brillouin zone, before it eventually gives rise to the formation of a charge density wave. On the new, disconnected parts of the Fermi surface superconductivity is induced with a sign-changing order parameter. We discuss these findings in the light of recent experiments on iron-based oxypnictide superconductors.
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