Interplay between superconductivity and itinerant magnetism in underdoped BaKFeAs ( 0.2) probed by the response to controlled point-like disorder
arXiv:1808.09532 · doi:10.1038/s41535-019-0171-2
Abstract
The response of superconductors to controlled introduction of point-like disorder is an important tool to probe their microscopic electronic collective behavior. In the case of iron-based superconductors (IBS), magnetic fluctuations presumably play an important role in inducing high temperature superconductivity. In some cases, these two seemingly incompatible orders coexist microscopically. Therefore, understanding how this unique coexistence state is affected by disorder can provide important information about the microscopic mechanisms involved. In one of the most studied pnictide family, hole-doped BaKFeAs (BaK122), this coexistence occurs over a wide range of doping levels, 0.16~~0.25. We used relativistic 2.5 MeV electrons to induce vacancy-interstitial (Frenkel) pairs that act as efficient point-like scattering centers. Upon increasing dose of irradiation, the superconducting transition temperature decreases dramatically. In the absence of nodes in the order parameter this provides a strong support for a sign-changing pairing. Simultaneously, in the normal state, there is a strong violation of the Matthiessen's rule and a decrease (surprisingly, at the same rate as ) of the magnetic transition temperature , which indicates the itinerant nature of the long-range magnetic order. Comparison of the hole-doped BaK122 with electron-doped Ba(FeCo)As (FeCo122) with similar 110~K, 0.02, reveals significant differences in the normal states, with no apparent Matthiessen's rule violation above on the electron-doped side. We interpret these results in terms of the distinct impact of impurity scattering on the competing itinerant antiferromagnetic and superconducting orders.
References in corpus (19)
- Effects of Co substitution on thermodynamic and transport properties and anisotropic in Ba(FeCo)As single crystals
- Orbital-driven nematicity in FeSe
- Lifting of nodes by disorder in extended- state superconductors: application to ferropnictides
- Growth and characterization of A_{1-x}K_xFe_2As_2 (A = Ba, Sr) single crystals with x=0 - 0.4
- Quasiparticle Heat Transport in BaKFeAs: Evidence for a k-dependent Superconducting Gap without Nodes
- Disorder-induced topological change of the superconducting gap structure in iron pnictides
- Enhancing Superconductivity by Disorder
- Enhancement of by disorder in underdoped iron pnictides
- A comprehensive scenario of the single crystal growth and doping dependence of resistivity and anisotropic upper critical fields in (BaK)FeAs ()
- Unconventional multi-band superconductivity in bulk SrTiO and LaAlO/SrTiO interfaces
- Effects of electron irradiation on resistivity and London penetration depth of BaKFeAs ( 0.34) iron - pnictide superconductor
- Using electron irradiation to probe iron - based superconductors
- Impact of Disorder on the Superconducting Phase Diagram in BaFe(AsP)
- Interplane resistivity of underdoped single crystals (BaK)FeAs,
- Pair breaking due to orbital magnetism in iron-based superconductors
- Generalization of Anderson's Theorem for Disordered Superconductors
- Comparative study of the effects of electron irradiation and natural disorder in single crystals of SrFe(AsP) (0.35) superconductor
- Multi-band effects in in-plane resistivity anisotropy of strain-detwinned disordered Ba(FeRu)As
- Electron irradiation of Co, Ni, and P-doped BaFe2As2 - type iron-based superconductors
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