Quasiparticle Heat Transport in Ba1-xKxFe2As2: Evidence for a k-dependent Superconducting Gap without Nodes
Abstract
The thermal conductivity of the iron-arsenide superconductor Ba1-xKxFe2As2 (Tc 30 K) was measured in single crystals at temperatures down to T 50 mK ( Tc/600) and in magnetic fields up to H = 15 T ( Hc2/4). A negligible residual linear term in /T as T 0 shows that there are no zero-energy quasiparticles in the superconducting state. This rules out the existence of line and in-plane point nodes in the superconducting gap, imposing strong constraints on the symmetry of the order parameter. It excludes d-wave symmetry, drawing a clear distinction between these superconductors and the high-Tc cuprates. However, the fact that a magnetic field much smaller than Hc2 can induce a residual linear term indicates that the gap must be very small on part of the Fermi surface, whether from strong anisotropy or band dependence, or both.
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