Weakening of the spin density wave gap at low temperatures in SrFeAs single crystals
arXiv:1503.00103 · doi:10.1002/pssb.201552463
Abstract
We report on temperature dependent scanning tunneling microscopy and spectroscopy studies of undoped SrFeAs single crystals from 6 K to 292 K. Resistivity data show spin density wave (SDW) transition at T 205 K and the superconducting transition at 21 K while magnetic susceptibility does not show any superconductivity. Conductance maps and local tunneling spectra show an electronically homogeneous surface at all studied temperatures. Tunnel spectra correlate well with the SDW transition with a depression in the density of states near the Fermi energy below T. On further lowering the temperature, the width of this partial energy gap associated with the SDW decreases. Using the anti-correlation of superconducting phase with SDW, we interpret this gap weakening as a precursor to superconductivity. This may give rise to a facile nucleation of superconductivity near defects.
References in corpus (16)
- Spin density wave anomaly at 140 K in the ternary iron arsenide BaFe2As2
- Origin of the spin density wave instability in AFeAs (A=Ba, Sr) as revealed by optical spectroscopy
- Iron based superconductors: magnetism, superconductivity and electronic structure
- Electronic phase separation in the slightly underdoped iron pnictide superconductor Ba(1-x)K(x)Fe(2)As(2)
- Magnetic and structural transitions in layered FeAs systems: AFe2As2 versus RFeAsO compounds
- Synthesis and Properties of CaFeAs Single Crystals
- Electrical Resistivity and Specific Heat of EuFe2As2 Single Crystals: Magnetic homologue of SrFe2As2
- Quantum oscillations in the parent magnetic phase of an iron arsenide high temperature superconductor
- Superconducting and ferromagnetic phases induced by lattice distortions in SrFe2As2
- Quantum oscillations in the parent pnictide BaFeAs : itinerant electrons in the reconstructed state
- Homogeneous vs. inhomogeneous coexistence of magnetic order and superconductivity probed by NMR in Co and K doped iron pnictides
- Effects of the magnetic orderings on the dynamical conductivity: optical investigations of EuFeAs single crystals
- Anisotropic magnetic and superconducting properties of pure and Co-doped CaFeAs single crystals
- Nanoscale superconducting gap variations, strong coupling signatures and lack of phase separation in optimally doped BaFe1.86Co0.14As2
- A high resolution, hard X-ray photoemission investigation of BaFeAs: moderate influence of the surface and evidence for a low degree of Fe 3d - As 4p hybridization of the near-E electronic states
- Electronic inhomogeneities in the superconducting phase of CaFe1.96Ni0.04As2 single crystals