Entangled Orbital Triplet Pairs in Iron-Based Superconductors
arXiv:1410.3554 · doi:10.1073/pnas.1523064113
Abstract
A key question in high temperature iron-based superconductivity is the mechanism by which the paired electrons minimize their strong mutual Coulomb repulsion. While electronically paired superconductors generally avoid the Coulomb interaction through the formation of nodal, higher angular momentum pairs, iron based superconductors appear to form singlet s-wave (s) pairs. By taking the orbital degrees of freedom of the iron atoms into account, here we argue that the s state in these materials possesses internal d-wave structure, in which a relative d-wave () motion of the pairs entangles with the () internal angular momenta of the d-orbitals to form a low spin singlet. We discuss how the recent observation of a nodal gap with octahedral structure in KFeAs can be understood as a high spin () configuration of the orbital and isospin angular momenta; the observed pressure-induced phase transition into a fully gapped state can then interpreted as a high-to-low spin phase transition of the Cooper pairs.
An online supplementary material has been included
References in corpus (23)
- A minimal two-band model for the superconducting Fe-pnictides
- Heavily electron-doped electronic structure and isotropic superconducting gap in AxFe2Se2 (A=K,Cs)
- Nodal Spin Density Wave and band topology of the FeAs based materials
- Spin-triplet p-wave pairing in a 3-orbital model for iron pnictide superconductors
- Fermi surface topology and low-lying quasiparticle dynamics of parent FeTe/Se Superconductor by orbital-polarization resolved ARPES
- Anisotropic Energy Gaps of Iron-based Superconductivity from Intra-band Quasiparticle Interference in LiFeAs
- Spin dynamics and an orbital-antiphase pairing symmetry in iron-based superconductors
- Microwave Surface-Impedance Measurements of the Magnetic Penetration Depth in Single Crystal Ba1-xKxFe2As2 Superconductors: Evidence for a Disorder-Dependent Superfluid Density
- Strong-coupling Spin-singlet Superconductivity with Multiple Full Gaps in Hole-doped BaKFeAs Probed by Fe-NMR
- Observation of the Josephson effect in Pb/(Ba,K)Fe2As2 single crystal junctions
- Local measurement of the superfluid density in the pnictide superconductor Ba(FeCo)As across the superconducting dome
- Nodes in the Gap Function of LaFePO, the Gap Function of the Fe(Se,Te) Systems, and the STM Signature of the s Pairing
- Pairing symmetry and properties of iron-based high temperature superconductors
- Evidence for a cos(4φ) Modulation of the Superconducting Energy Gap of Optimally Doped FeTe_{0.6}Se_{0.4} Single Crystals Using Laser Angle-Resolved Photoemission Spectroscopy
- Observation of an isotropic superconducting gap at the Brillouin zone center of TlKFeSe
- Correlation-enhanced odd-parity inter-orbital singlet pairing in the iron-pnictide superconductor LiFeAs
- Limits on the Superconducting Order Parameter in NdFeAsOF from Scanning SQUID Microscopy
- Symmetry of superconducting states with two orbitals on a tetragonal lattice: application to
- Thermodynamic Study of Nodal Structure and Multiband Superconductivity of KFe2As2
- Evolution of London penetration depth with scattering in single crystals of KNaFeAs
- Experimental determination of the microscopic origin of magnetism in parent iron pnictides
- Classification of the Super-conducting order parameters under the point group symmetry for a multi-band system: application to LaOFeAs
- He-R: A Topological Superfluid with Triplet Pairing
Cited by in corpus (31)
- Bogoliubov Fermi surfaces in superconductors with broken time-reversal symmetry
- Low-energy microscopic models for iron-based superconductors: a review
- Bogoliubov Fermi surfaces: General theory, magnetic order, and topology
- Orbital selectivity and emergent superconducting state from quasi-degenerate and wave pairing channels in iron-based superconductors
- Orbital selective pairing and superconductivity in iron selenides
- Tailoring by symmetry principles: The concept of Superconducting Fitness
- Hund interaction, spin-orbit coupling and the mechanism of superconductivity in strongly hole-doped iron pnictides
- Fully gapped -wave superconductivity in CeCuSi
- Two-gap superconductivity in LaNiGa with non-unitary triplet pairing and even parity gap symmetry
- Orbital selectivity in electron correlations and superconducting pairing of iron-based superconductors
- Experimental consequences of Bogoliubov Fermi surfaces
- Bogoliubov Fermi surfaces stabilized by spin-orbit coupling
- Correlation-enhanced odd-parity inter-orbital singlet pairing in the iron-pnictide superconductor LiFeAs
- Higher angular momentum pairings in interorbital shadowed-triplet superconductors: Application to SrRuO
- Multiorbital singlet pairing and superconductivity
- Spin resonance in the superconducting state of LiFeODFeSe observed by neutron spectroscopy
- Iron-based superconductors: teenage, complex, challenging
- Robustness of unconventional -wave superconducting states against disorder
- Displacement and annihilation of Dirac gap-nodes in d-wave iron-based superconductors
- General theory of robustness against disorder in multi-band superconductors
- Distortional weak-coupling instability of Bogoliubov Fermi surfaces
- The Coulomb problem in iron based superconductors
- Bogoliubov Fermi surfaces from pairing of emergent fermions on the pyrochlore lattice
- Renormalization group analysis for the quasi-1D superconductor BaFeS
- Stability of Bogoliubov Fermi Surfaces within BCS Theory
- Fate of the Hebel-Slichter peak in superconductors with strong antiferromagnetic fluctuations
- Theory Perspective: SCES 2016
- Orbital-selective correlations and renormalized electronic structure in LiFeAs
- Spin-orbit-coupled superconductivity with spin-singlet non-unitary pairing
- Theory of pairing in mixed-valent correlated metals
- Plaquette-centered rotation symmetry and octet-nodal superconductivity in