Nodeless superconductivity in KFeSe single crystals revealed by low temperature specific heat
arXiv:1101.5117 · doi:10.1103/PhysRevB.83.144511
Abstract
Low temperature specific heat (SH) has been measured in KFeSe single crystals with T = 32 K. The SH anomaly associated with the superconducting transition is moderate and sharp yielding a value of = 11.6 1.0 . The residual SH coefficient in the superconducting state at T 0 is very small with a value of about 0.39 . The magnetic field induced enhancement of the low-T SH exhibits a rough linear feature indicating a nodeless gap. This is further supported by the scaling based on the s-wave approach of the low-T data at different magnetic fields. A rough estimate tells that the normal state SH coefficient is about 6 0.5 leading to = 1.93 and placing this new superconductor in the strong coupling region.
4 pages, 4 figures
References in corpus (10)
- Magnetic Order versus superconductivity in the Iron-based layered La(O1-xFx)FeAs systems
- Unconventional pairing originating from disconnected Fermi surfaces in superconducting LaFeAsOF}
- Strong Correlations and Magnetic Frustration in the High Tc Iron Pnictides
- Funtional Renormalization Group Study of the Pairing Symmetry and Pairing Mechanism of the FeAs Based High Temperature Superconductors
- Pairing Symmetry in a Two-Orbital Exchange Coupling Model of Oxypnictides
- Fully Gapped Superconducting State Based on a High Normal State Quasiparticle Density of States in BaKFeAs Single Crystals
- Low temperature specific heat of the hole-doped Ba_{0.6}K_{0.4}Fe_2As_2 single crystals and electron-doped SmFeAsO_{0.9}F_{0.1} samples
- Spin Fluctuations, Interband Coupling, and Unconventional Pairing in Iron-based Superconductors
- A doping dependent specific heat study of the superconducting gap in Ba(FeCo)As
- Single Impurity Problem in Iron-Pnictide Superconductors
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