Physical properties of FeSeTe single crystals grown under different conditions
arXiv:1006.4453 · doi:10.1140/epjb/e2010-10473-5
Abstract
We report on structural, magnetic, conductivity, and thermodynamic studies of FeSeTe single crystals grown by self-flux and Bridgman methods. The samples were prepared from starting materials of different purity at various temperatures and cooling rates. The lowest values of the susceptibility in the normal state, the highest transition temperature of 14.5 K, and the largest heat-capacity anomaly at were obtained for pure (oxygen-free) samples. The critical current density of A/cm (at 2 K) achieved in pure samples is attributed to intrinsic inhomogeneity due to disorder at the cation and anion sites. The impure samples show increased up to A/cm due to additional pinning centers of FeO. The upper critical field of kOe is estimated from the resistivity study in magnetic fields parallel to the \emph{c}-axis. The anisotropy of the upper critical field reaches a value at . Extremely low values of the residual Sommerfeld coefficient for pure samples indicate a high volume fraction of the superconducting phase (up to 97%). The electronic contribution to the specific heat in the superconducting state is well described within a single-band BCS model with a temperature dependent gap K. A broad cusp-like anomaly in the electronic specific heat of samples with suppressed bulk superconductivity is ascribed to a splitting of the ground state of the interstitial Fe ions. This contribution is fully suppressed in the ordered state in samples with bulk superconductivity.
11 pages, 11 figures, 3 tables
References in corpus (14)
- Superconductivity at 38 K in the iron arsenide (Ba1-xKx)Fe2As2
- Superconductivity at 36 K in beta-Fe1.01Se with the compression of the interlayer separation under pressure
- LiFeAs: An Intrinsic FeAs-based Superconductor with Tc = 18K
- Extreme Sensitivity of Superconductivity to Stoichiometry in FeSe (Fe1+dSe)
- Superconductivity close to magnetic instability in Fe(Se1-xTex)0.82
- Tellurium substitution effect on superconductivity of the alpha-phase Iron Selenide
- First-order magnetic and structural phase transitions in FeSeTe
- Bulk Superconductivity at 14 K in Single Crystals of Fe1+yTexSe1-x
- Vortex phase diagram of Ba(Fe0.93Co0.07)2As2 single crystals
- Neutron Studies of the Iron-based Family of High TC Magnetic Superconductors
- Neutron scattering Measurements of the phonon density of states of FeSe superconductors
- Muon-spin-spectroscopy study of the penetration depth of FeTe0.5Se0.5
- Anisotropic fluctuations and quasiparticle excitations in FeSe_0.5Te_0.5
- Enhancement of the superconducting transition temperature in cuprate heterostructures