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The high-transition-temperature (high-Tc) superconductivity discovered recently in iron pnictides is analyzed within a perturbation theory. Specifically, the probable pairing symmetry, the doping dependence of the transition temperature and…

Superconductivity · Physics 2009-11-13 Takuji Nomura

The discovery of high-temperature superconductivity in iron pnictides raised the possibility of an unconventional superconducting mechanism in multiband materials. The observation of Fermi-surface(FS)-dependent nodeless superconducting gaps…

The pairing mechanism in iron-based superconductors is the subject of ongoing debate. Proximity to an antiferromagnetic phase suggests that pairing is mediated by spin fluctuations, but orbital fluctuations have also been invoked. The…

Multiband superconductivity, involving resonant pair scattering between different bands, has emerged as a possible explanation of some of the main characteristics of the recently discovered iron pnictides. A key feature of such interband…

Superconductivity · Physics 2009-11-13 Valentin Stanev , Jian Kang , Zlatko Tesanovic

A determination of the superconducting (SC) electron pairing symmetry forms the basis for establishing a microscopic mechansim for superconductivity. For iron pnictide superconductors, the $s^\pm$-pairing symmetry theory predicts the…

We calculate the spin susceptibility in the s_{+-} and s_{++} superconducting states of the iron pnictides using the effective five orbital model and considering the quasiparticle damping. For the experimentally evaluated magnitude of the…

Superconductivity · Physics 2011-07-13 Yuki Nagai , Kazuhiko Kuroki

We show that, by using unit-cell transformation between 1 Fe per unit cell to 2 Fe per unit cell, one can qualitatively understand the pairing symmetry of several families of iron-based superconductors. In iron-pnictides and…

Superconductivity · Physics 2012-03-26 Tanmoy Das

The symmetry of the wave function describing the Cooper pairs is one of the most fundamental quantities in a superconductor but its measurement in the iron-based superconductors has proved to be very difficult. The complex multi-band nature…

Superconductivity · Physics 2015-06-17 Z. P. Yin , K. Haule , G. Kotliar

We study a four-band model for the iron oxypnictides, in which the superconducting properties are assumed to be determined by the interband coupling between hole-like and electron-like Fermi sheets. We show that reasonable parameters can…

Superconductivity · Physics 2008-10-03 L. Benfatto , M. Capone , S. Caprara , C. Castellani , C. Di Castro

We study whether Fermi-surface (FS) nesting can give rise to high-temperature superconductivity in iron pnictides. Starting with ab initio construction of an effective four-orbital model, we employ the fluctuation-exchange approximation to…

Superconductivity · Physics 2015-05-14 Ryotaro Arita , Hiroaki Ikeda

We propose a two band model for superconductivity. It turns out that the simplest nontrivial case considers solely interband scattering, and both bands can be modeled as symmetric (around the Fermi level) and flat, thus each band is…

Superconductivity · Physics 2017-08-23 R. E. Lagos , G. G. Cabrera

The newly discovered iron pnictide superconductors apparently present an unusual case of interband-channel pairing superconductivity. Here we show that, in the limit where the pairing occurs within the interband channel, several surprising…

Superconductivity · Physics 2009-11-13 O. V. Dolgov , I. I. Mazin , D. Parker , A. A. Golubov

Superconductivity in iron pnictides is studied by using a two-orbital Hubbard model in the large U limit. The Coulomb repulsion induces an orbital-dependent pairing between charge carriers. The pairing is found mainly from the scattering…

Superconductivity · Physics 2009-02-02 Wei-Qiang Chen , Kai-Yu Yang , Yi Zhou , Fu-Chun Zhang

One of the major themes in the physics of condensed matter is unconventional superconductivity in correlated electronic systems. The symmetry structure of Cooper pairs is thought to be the key to the understanding of the pairing mechanism…

Superconductivity · Physics 2015-02-26 Mahmoud Abdel-Hafiez , Zheng He , Jun Zhao , Xingye Lu , Huiqian Luo , Pengcheng Dai , Xiao-Jia Chen

Motivated by a recent experiment of Song \emph{et al.} [Science {\bf 332}, 1410 (2011)], we theoretically study the spin dynamics, charge dynamics, and point-contact Andreev-reflection spectroscopy (PCARS) of two-band iron-based…

Superconductivity · Physics 2012-07-03 Hsuan-Hao Fan , C. S. Liu , W. C. Wu

Quantum noise has long served as a powerful probe of quantum transport in mesoscopic junctions. Recently, temperature-driven noise, or $\Delta_T$ noise, has attracted growing interest due to its presence even in the absence of average…

Superconductivity · Physics 2026-05-27 Sachiraj Mishra , A Rajmohan Dora , Colin Benjamin

We perform a systematic quantum Monte Carlo study of the pairing correlation in the $S_4$ symmetric microscopic model for iron-based superconductors. It is found that the pairing with an extensive s-wave symmetry robustly dominates over…

Strongly Correlated Electrons · Physics 2013-03-07 Tianxing Ma , Hai-Qing Lin , Jiangping Hu

The pairing symmetry is one of the major issues in the study of iron-based superconductors. We adopt a low-energy effective kinetic model based on the first-principles band structure calculations combined with the $J_1$-$J_2$ model for…

Superconductivity · Physics 2015-03-20 Wei Li , Jian Li , Jian-Xin Zhu , Yan Chen , C. S. Ting

Some of the iron pnictides show coexisting superconductivity and spin-density-wave order. We study the superconducting pairing instability in the spin-density-wave phase. Assuming that the pairing interaction is due to spin fluctuations, we…

Superconductivity · Physics 2014-03-05 Jacob Schmiedt , P. M. R. Brydon , Carsten Timm

We present a detailed description of two-band quasi-2D metals with s-wave superconducting (SC) and antiferromagnetic spin-density wave (SDW) correlations. We present a general approach and use it to investigate the influence of the…

Superconductivity · Physics 2010-06-04 A. B. Vorontsov , M. G. Vavilov , A. V. Chubukov
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