Electronic inhomogeneities in the superconducting phase of CaFe1.96Ni0.04As2 single crystals
arXiv:1407.2054 · doi:10.1016/j.ssc.2014.12.009
Abstract
Superconductivity in Iron-Arsenic based pnictides emerges in close proximity to an antiferromagnetic (AFM)ordered parent state and the AFM phase overlaps with superconducting (SC) phase in some pnictides for certain range of doping. CaFe2-xNixAs2 belongs to this category, where both the phases overlap. Here we use scanning tunneling microscopy and spectroscopy to investigate the local electronic properties of uderdoped CaFe1.96Ni0.04As2 single crystals in the vicinity of the boundary of the two phases. Both resistivity and magnetic measurements show that a tiny portion (~ 1.2 %) of this compound becomes superconductor below the SC onset temperature TC ~ 15 K. Topographic images show reasonably flat surface with signatures of atomic resolution. High temperature spectra are spatially homogeneous and show signatures of spin density wave (SDW) gap with a finite density of states near the Fermi energy. Below TC, spectra show significant spatial inhomogeneity with a SDW gap everywhere but at some locations we also see an asymmetric or symmetric depression in ~ +/- 5 meV energy range together with the SDW gap. Inhomogeneity reduces significantly as the temperature goes above TC and disappears completely far above TC. These observations are discussed in terms of an inhomogeneous electronic phase that may exist due to the vicinity of this composition to the SC dome boundary on the underdoped side of the phase diagram.
References in corpus (15)
- Structural and magnetic phase diagram of CeFeAsO1-xFx and its relationship to high-temperature superconductivity
- Visualizing pair formation on the atomic scale in the high-Tc superconductor Bi2Sr2CaCu2O8+d
- The electronic phase diagram of the LaO1-xFxFeAs superconductor
- Coexistence of the spin-density-wave and superconductivity in the (Ba,K)Fe2As2
- First order structural phase transition in CaFeAs
- Coexistence of static magnetism and superconductivity in SmFeAsO1-xFx as revealed by muon spin rotation
- Electronic phase separation in the slightly underdoped iron pnictide superconductor Ba(1-x)K(x)Fe(2)As(2)
- Synthesis and Properties of CaFeAs Single Crystals
- Superconductivity coexisting with phase-separated static magnetic order in (Ba,K)FeAs, (Sr,Na)FeAs and CaFeAs
- 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
- Coexistence and competition of magnetism and superconductivity on the nanometer scale in underdoped BaFe1.89Co0.11As2
- Muon spin rotation study of magnetism and superconductivity in Ba(Fe1-xCox)2As2 single crystals
- 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
- Evolution of the bulk properties, structure, magnetic order, and superconductivity with Ni doping in CaFe2-xNixAs2