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We study the spin resonance in superconducting state of iron-based materials within multiband models with two unequal gaps, $\Delta_L$ and $\Delta_S$, on different Fermi surface pockets. We show that due to the indirect nature of the gap…

Superconductivity · Physics 2016-10-04 M. M. Korshunov , V. A. Shestakov , Yu. N. Togushova

We show that the fluctuations associated with ferro orbital order in the $d_{xz}$ and $d_{yz}$ orbitals can develop a sharp resonance mode in the superconducting state with a nodeless gap on the Fermi surface. This orbital resonance mode…

Superconductivity · Physics 2013-09-17 Wei-Cheng Lee , Philip W. Phillips

Motivated by the iron-based superconductors, we develop a self-consistent electronic theory for the itinerant spin excitations in the regime of coexistence of the antiferromagnetic stripe order with wavevector ${\bf Q}_{1} = (\pi,0)$ and…

Superconductivity · Physics 2011-12-22 J. Knolle , I. Eremin , J. Schmalian , R. Moessner

We report on inelastic neutron scattering measurements that find incommensurate itinerant like magnetic excitations in the normal state of superconducting FeTe$_{0.6}$Se$_{0.4}$ (\Tc=14K) at wave-vector…

Based on an effective two-band model and using the fluctuation-exchange (FLEX) approach, we explore spin fluctuations and unconventional superconducting pairing in Fe-based layer superconductors. It is elaborated that one type of interband…

Superconductivity · Physics 2009-02-27 Zi-Jian Yao , Jian-Xin Li , Z. D. Wang

Motivated by the premise that superconductivity in iron-based superconductors is unconventional and mediated by spin fluctuations, an intense research effort has been focused on characterizing the spin excitation spectrum in 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

We present a theoretical study of the dynamical spin susceptibility for the intriguing Fe-based superconductor FeSe, based on a tight-binding model developed to account for the temperature-dependent band structure in this system. The model…

Superconductivity · Physics 2016-01-05 A. Kreisel , Shantanu Mukherjee , P. J. Hirschfeld , Brian M. Andersen

The implications of the spin exciton mechanism are exposed in the context of a Spin Density Wave (SDW) instability occurring inside the superconducting phase of a layered heavy electron compound. In this model a magnetic field serves as a…

Superconductivity · Physics 2015-05-27 V. P. Michal , V. P. Mineev

We propose an effective single-band model for the newly discovered iron selenide superconductors A$_x$Fe$_{2-y}$Se$_2$ (A=Tl,K,Rb,Cs). Based on this minimum model and the random phase approximation, the $d_{x^2-y^2}$ pairing symmetry is…

Superconductivity · Physics 2012-02-09 Tao Zhou , Z. D. Wang

Multiband systems, which possess a wide parameter space, allow to explore a variety of competing ground states. Bright examples are the Fe-based pnictides and chalcogenides, which demonstrate metallic, superconducting, and various magnetic…

Superconductivity · Physics 2018-01-30 Maxim M. Korshunov

We analyze the influence of unconventional superconductivity on the magnetic excitations in the heavy fermion compound UPd$_2$Al$_3$. We show that it leads to the formation of a bound state at energies well below 2$\Delta_0$ at the…

Superconductivity · Physics 2007-05-23 Jun Chang , I. Eremin , P. Thalmeier , P. Fulde

The electronic states and superconductivity in iron pnictides are studied on the basis of the 16 band $d$-$p$ model which includes both the onsite Coulomb interaction between Fe $d$ electrons and the intersite one between Fe $d$ and…

Superconductivity · Physics 2014-03-17 Takemi Yamada , Jun Ishizuka , Yoshiaki Ōno

Resonant magnetic excitations are widely recognized as hallmarks of unconventional superconductivity in copper oxides, iron pnictides, and heavy-fermion compounds. Numerous model calculations have related these modes to the microscopic…

Strongly Correlated Electrons · Physics 2012-05-16 G. Friemel , Yuan Li , A. V. Dukhnenko , N. Yu. Shitsevalova , N. E. Sluchanko , A. Ivanov , V. B. Filipov , B. Keimer , D. S. Inosov

The nature of the superconducting state in the recently discovered Fe-based superconductors1-3 is the subject of intense scrutiny. Neutron scattering investigations have already elucidated a strong correlation between magnetism and…

Neutron scattering is used to probe antiferromagnetic spin fluctuations in the d-wave heavy fermion superconductor CeCoIn$_{5}$ (T$_{c}$=2.3 K). Superconductivity develops from a state with slow ($\hbar\Gamma$=0.3 $\pm$ 0.15 meV)…

Superconductivity · Physics 2009-11-13 C. Stock , C. Broholm , J. Hudis , H. J. Kang , C. Petrovic

Spin fluctuations are considered to be one of the candidates that drive a sign-reversed s^{\pm} superconducting state in the iron pnictides. In the magnetic scenario, whether the spin fluctuation spectrum exhibits certain unique fine…

Superconductivity · Physics 2010-10-25 Junhua Zhang , Rastko Sknepnek , Jörg Schmalian

In iron pnictides, we find that the moderate electron-phonon interaction due to the Fe-ion oscillation can induce the critical d-orbital fluctuations, without being prohibited by the Coulomb interaction. These fluctuations give rise to the…

Strongly Correlated Electrons · Physics 2010-04-19 Hiroshi Kontani , Seiichiro Onari

Unconventional superconductivity in many materials is believed to be mediated by magnetic fluctuations. It is an open question how magnetic order can emerge from a superconducting condensate and how it competes with the magnetic spin…

Strongly Correlated Electrons · Physics 2017-11-08 D. G. Mazzone , S. Raymond , J. L. Gavilano , P. Steffens , A. Schneidewind , G. Lapertot , M. Kenzelmann

Recent experiments on CeCoIn5 -- a prototypical d-wave superconductor -- indicate that its normal state lies near an unconventional quantum critical point (QCP). One intriguing hypothesis is that quantum-critical fluctuations promote…

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