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Unconventional Pairing Originating from the Disconnected Fermi Surfaces of Superconducting LaFeAsO 1-x F x

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TLDR
It is concluded that the multiple spin-fluctuation modes arising from the nesting across the disconnected Fermi surfaces realize an extended s-wave Pairing, while d-wave pairing can also be another candidate.
Abstract
For a newly discovered iron-based high ${T}_{c}$ superconductor ${\mathrm{LaFeAsO}}_{1\ensuremath{-}x}{\mathrm{F}}_{x}$, we have constructed a minimal model, where inclusion of all five Fe $d$ bands is found to be necessary. The random-phase approximation is applied to the model to investigate the origin of superconductivity. We conclude that the multiple spin-fluctuation modes arising from the nesting across the disconnected Fermi surfaces realize an extended $s$-wave pairing, while $d$-wave pairing can also be another candidate.

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Nematic Pairing from Orbital Selective Spin Fluctuations in FeSe

TL;DR: In this article, the spin-nematic scenario driven by orbital-selective spinfluctuations provides a simple scheme to understand both phenomena, leading to stronger pair scattering across the hole and $X$ electron pocket.
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Predicting Unconventional High-Temperature Superconductors in Trigonal Bipyramidal Coordinations

TL;DR: In this article, an examination of the unique relationship between electronic structures and lattice structural units of the two known classes of high-temperature superconductors helps to identify possible new classes of these materials.
Journal ArticleDOI

Enhancement of the critical temperature of the pnictide superconductor LaFeAsO 1 − x F x studied via A 75 s NMR under pressure

TL;DR: In this paper, nuclear magnetic resonance measurements of an iron-based superconductor were performed at ambient pressure and under pressure, and the relaxation rate of the underdoped and overdoped samples was investigated.
Journal ArticleDOI

Spin-Density-Wave Gap with Dirac Nodes and Two-Magnon Raman Scattering in BaFe2As2

TL;DR: In this article, Raman selection rules for electronic and magnetic excitations in BaFe2As2 were theoretically investigated and applied them to the separate detection of the nodal and anti-nodal gap excitations at the spin density wave (SDW) transition and the separate detecting of the nearest and the next nearest neighbor exchange interaction energies.
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