Superconductivity at 32K and anisotropy in Tl0.58Rb0.42Fe1.72Se2 crystals
arXiv:1101.0462 · doi:10.1209/0295-5075/93/47004
Abstract
Single crystals of Tl0.58Rb0.42Fe1.72Se2 are successfully grown with the superconducting transition temperatures Tconset=32K and Tczero=31.4K. The Hall coefficient exhibits a multi-band behavior, which is very similar to that of all other Fe-based superconductors. We found that the susceptibility at the normal state decreases with decreasing the temperature, indicating a strong antiferromagnetic (AFM) spin fluctuation at the normal state, which might be related to the superconductivity (SC). We also determined the upper critical fields in ab-plane and along c-axis. The anisotropy of the superconductivity determined by the ratio of Hc2ab and Hc2c is estimated to 5.0, which is larger than that in (Ba,K)Fe2As2 and BaFe2-xCoxAs2, but smaller than that in cuprate superconductors.
4 pages, 4 figures
References in corpus (12)
- Superconductivity at 38 K in the iron arsenide (Ba1-xKx)Fe2As2
- Superconductivity at 43 K in Samarium-arsenide Oxides
- Superconductivity at 41 K and its competition with spin-density-wave instability in layered CeOFFeAs
- The superconductivity at 18 K in LiFeAs system
- Superconductivity in iron-based F-doped layered quaternary compound Nd[O1-xFx]FeAs
- Superconductivity close to magnetic instability in Fe(Se1-xTex)0.82
- Thorium-doping induced superconductivity up to 56 K in Gd1-xThxFeAsO
- Effects of Co substitution on thermodynamic and transport properties and anisotropic in Ba(FeCo)As single crystals
- Superconductivity at 25 K in hole doped
- Superconductivity induced by Ni doping in BaFeAs
- Probing superconducting energy gap from infrared spectroscopy on a BaKFeAs single crystal with T=37 K
- Upper critical field, anisotropy, and superconducting properties of BaKFeAs single crystals
Cited by in corpus (25)
- Observation of Temperature-Induced Crossover to an Orbital-Selective Mott Phase in AFeSe (A=K, Rb) Superconductors
- Superconducting Phases in Potassium-Intercalated Iron Selenides
- Electronic Structure and Superconductivity of FeSe-Related Superconductors
- Intrinsic phase separation in superconducting K0.8Fe1.6Se2 (Tc= 31.8 K) single crystals
- Phase relations in K_xFe_{2-y}Se_2 and the structure of superconducting K_xFe_2Se_2 via high-resolution synchrotron diffraction
- Structure, magnetic order and excitations in the 245 family of Fe-based superconductors
- High-Tc superconductivity up to 55 K under high pressure in the heavily electron doped Lix(NH3)yFe2Se2 single crystal
- Anisotropy in transport and magnetic properties of K0.64Fe1.44Se2
- Crystal structure, physical properties and superconductivity in FeSe single crystals
- Structure and composition of the superconducting phase in alkali iron selenide KFeSe
- Understanding doping, vacancy, lattice stability and superconductivity in KxFe2-ySe2
- Two spatially separated phases in semiconducting RbFeS
- Effective medium approximation and the complex optical properties of the inhomogeneous superconductor K_{0.8}Fe_{2-y}Se_2
- Superconductivity and normal state properties of single-crystalline Tl0.47Rb0.34Fe1.63Se2 as seen via 77Se and 87Rb NMR
- High pressure growth and electron transport properties of superconducting SmFeAsO1-xHx single crystals
- Neutron Scattering Study on Spin Dynamics in Superconducting (Tl,Rb)2Fe4Se5
- Probing the superconducting gap structure of (LiFe)OHFeSe
- Magnetic neutron scattering studies on the Fe-based superconductor system FeTeSe
- High-pressure single-crystal neutron scattering study of magnetic and Fe vacancy orders in (Tl,Rb)2Fe4Se5 superconductor
- Direct Observation of Microstructures on Superconducting Single Crystals of KFeSe
- The weak electronic correlations and absence of heavy Fermion state in KNiSe
- Growth of (NaxKy)FezSe2 crystals by chlorides flux at low temperatures
- Fermi surface evolution and checker-board block-spin antiferromagnetism in FeSe
- Enhanced superconductivity and moderate spin fluctuations suppressed at low energies in heavily electron-doped La1111-based superconductor
- Quenching Dependence on Superconductivity in the Synthesizing Process of Single Crystals of RbFeSe