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Magnetism, superconductivity, and pairing symmetry in iron-based superconductors

TLDR
In this paper, the antiferromagnetism and superconductivity in novel Fe-based superconductors were analyzed in the itinerant model of small electron and hole pockets near 0,0 and, respectively, and the effective interactions in both channels logarithmically flow toward the same values at low energies.
Abstract
We analyze antiferromagnetism and superconductivity in novel Fe-based superconductors within the itinerant model of small electron and hole pockets near 0,0 and ,. We argue that the effective interactions in both channels logarithmically flow toward the same values at low energies; i.e., antiferromagnetism and superconductivity must be treated on equal footing. The magnetic instability comes first for equal sizes of the two pockets, but loses to superconductivity upon doping. The superconducting gap has no nodes, but changes sign between the two Fermi surfaces extended s-wave symmetry. We argue that the T dependencies of the spin susceptibility and NMR relaxation rate for such a state are exponential only at very low T, and can be well fitted by power laws over a wide T range below Tc.

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Journal ArticleDOI

Magnetic Interactions, Superconductivity, and Spin-Resonance Peak in Iron-Based Materials

TL;DR: In this paper, the spin fluctuation mechanism of Cooper pairing and spin resonance feature in the superconducting state of iron-based materials are discussed and the spin gap structures of multiband systems are discussed.
Journal ArticleDOI

Roles of anisotropic and unequal gaps in the quasiparticle interference of superconducting iron pnictides

TL;DR: In this article, the role of gap characteristics such as anisotropy or inequality of the gaps in the quasiparticle interferences of iron pnictides using a five-orbital tight-binding model was investigated.
Journal ArticleDOI

Possible coexistence of double-Q magnetic order and chequerboard charge order in the re-entrant tetragonal phase of Ba 0.76 K 0.24 Fe 2 As 2

TL;DR: In this paper, the authors investigated the reentrant tetragonal phase in the iron-based superconductor Ba 0 76 K 024 Fe 2 As 2 by DC magnetization and thermoelectrical measurements.
Journal ArticleDOI

P-concentration dependence of the quasiparticle density of states in BaFe2(As1-xPx)2

TL;DR: In this article, the spin part of the Knight shift Kspin and (T1T)−1/2 are proportional to the quasiparticle density of states at the Fermi level N(EF) at high temperature where the Korringa relation holds.
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