Model for the magnetic order and pairing channels in Fe pnictide superconductors

A two-orbital model for Fe-pnictide superconductors is investigated using computational techniques on two-dimensional square clusters. The hopping amplitudes are derived from orbital overlap integrals, or by band structure fits, and the spin frustrating effect of the plaquette-diagonal Fe-Fe hopping...

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Veröffentlicht in:Physical review letters 2008-12, Vol.101 (23), p.237004-237004, Article 237004
Hauptverfasser: Daghofer, M, Moreo, A, Riera, J A, Arrigoni, E, Scalapino, D J, Dagotto, E
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Sprache:eng
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Zusammenfassung:A two-orbital model for Fe-pnictide superconductors is investigated using computational techniques on two-dimensional square clusters. The hopping amplitudes are derived from orbital overlap integrals, or by band structure fits, and the spin frustrating effect of the plaquette-diagonal Fe-Fe hopping is remarked. A spin striped state is stable in a broad range of couplings in the undoped regime, in agreement with neutron scattering. Adding two electrons to the undoped ground state of a small cluster, the dominant pairing operators are found. Depending on the parameters, two pairing operators were identified: they involve inter-xz-yz orbital combinations forming spin singlets or triplets, transforming according to the B2g and A2g representations of the D4h group, respectively.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.101.237004