Thermal Hall Conductivity as a Probe of Gap Structure in Multi-band Superconductors: The Case of
arXiv:0811.4668 · doi:10.1103/PhysRevB.86.180502
Abstract
The sign and profile of the thermal Hall conductivity gives important insights into the gap structure of multi-band superconductors. With this perspective, we have investigated and the thermal conductivity in which display large peak anomalies in the superconducting state. The anomalies imply that a large hole-like quasiparticle (qp) population exists below the critical temperature . We show that the qp mean-free-path inferred from reproduces the observed anomaly in , providing a consistent estimate of a large qp population. Further, we demonstrate that the hole-like signal is consistent with a theoretical scenario where despite potentially large gap variations on the electron pockets, the minimal homogeneous gap of the superconducting phase resides at a hole pocket. Implications for probing the gap structure in the broader class of pnictide superconductors are discussed.
5 pages, 4 figures. Orientation significantly updated from previous (0811.4668v1) reflecting new theoretical understanding of experimental results and physical implications. Introduction, discussion, and figures updated including additional figure for model calculation
References in corpus (32)
- Unconventional sign-reversing superconductivity in LaFeAsO_(1-x)F_x
- Magnetic Order versus superconductivity in the Iron-based layered La(O1-xFx)FeAs systems
- Superconductivity at 43 K in Samarium-arsenide Oxides
- Unconventional pairing originating from disconnected Fermi surfaces in superconducting LaFeAsOF}
- Gap symmetry and structure of Fe-based superconductors
- Superconductivity at 41 K and its competition with spin-density-wave instability in layered CeOFFeAs
- Observation of Fermi-surface-dependent nodeless superconducting gaps in Ba0.6K0.4Fe2As2
- Near-degeneracy of several pairing channels in multiorbital models for the Fe-pnictides
- Magnetism, superconductivity, and pairing symmetry in Fe-based superconductors
- Pnictogen height as a possible switch between high-T_c nodeless and low-T_c nodal pairings in the iron based superconductors
- Funtional Renormalization Group Study of the Pairing Symmetry and Pairing Mechanism of the FeAs Based High Temperature Superconductors
- A Numerical Renormalization Group Study of the Superconducting and Spin Density Wave Instabilities in MFeAsOF Compounds
- Fe-based high temperature superconductivity with Tc=31K bordering an insulating antiferromagnet in (Tl,K)FexSe2 Crystals
- Anisotropic thermodynamic and transport properties of single crystalline (BaK)FeAs (x = 0 and 0.45)
- Evolution from Itinerant Antiferromagnet to Unconventional Superconductor with Fluorine Doping in La(O_{1-x}F_{x})FeAs Revealed by ^{75}As and ^{139}La Nuclear Magnetic Resonance
- Spin fluctuations and superconductivity in a 3D tight-binding model for BaFe2As2
- d-wave pairing from spin fluctuations in the KxFe{2-y}Se2 superconductors
- Microwave Surface-Impedance Measurements of the Magnetic Penetration Depth in Single Crystal Ba1-xKxFe2As2 Superconductors: Evidence for a Disorder-Dependent Superfluid Density
- Exotic d-wave superconductivity in strongly hole doped K(x)Ba(1-x)Fe2As2
- Momentum-dependence of Superconducting Gap, strong-coupling dispersion Kink, and tightly bound Cooper pairs in the high-Tc (Sr,Ba)1-x(K,Na)xFe2As2 superconductors
- Tightly-bound Cooper pair, quasiparticle kinks and clues on the pairing potential in a high Tc FeAs Superconductor
- The Electron Pairing of KFeSe
- Quasiparticle Heat Transport in BaKFeAs: Evidence for a k-dependent Superconducting Gap without Nodes
- Strong-coupling Spin-singlet Superconductivity with Multiple Full Gaps in Hole-doped BaKFeAs Probed by Fe-NMR
- 75As NMR Study of Hole-Doped Superconductor Ba1-xKxFe2As2 (Tc = 38K)
- Electronic structure of optimally doped pnictide BaKFeAs: a comprehensive ARPES investigation
- Spin Fluctuation Dynamics and Multiband Superconductivity in Iron Pnictides
- Robustness of s-wave Pairing in Electron-Overdoped
- Pairing in the iron arsenides: a functional RG treatment
- Anisotropic spin fluctuations and multiple superconducting gaps in hole-doped Ba_0.7K_0.3Fe_2As_2: NMR in a single crystal
- The Lorenz number in CeCoIn inferred from the thermal and charge Hall currents
- Deviating band symmetries and many-body interactions in a model hole doped iron pnictide superconductor
Cited by in corpus (11)
- Functional Renormalization Group for multi-orbital Fermi Surface Instabilities
- Phase diagram and Gap anisotropy in Iron-Pnictide Superconductors
- Topological superconductivity of spin-3/2 carriers in a three-dimensional doped Luttinger semimetal
- Topological Weyl Superconductor to Diffusive Thermal Hall Metal Crossover in the B-Phase of UPt
- Complex superconductivity in the noncentrosymmetric compound ReZr
- The influence of spin fluctuations on the thermal conductivity in superconducting Ba(Fe_{1-x}Co_x)_2As_2
- Multiband thermal transport in the iron-based superconductor Ba1 xKxFe2As2
- Thermal conductivity and annealing effects in the iron-based superconductor FeSeTe
- A spatially resolved optical method to measure thermal diffusivity
- Large Oscillatory Thermal Hall Effect in Kagome Metals
- Evolution of superconducting gap anisotropy in hole-doped 122 iron pnictides