Static magnetic order of SrAOFeAs (A = Sc and V) revealed by local probes
arXiv:1011.1894 · doi:10.1103/PhysRevB.84.024527
Abstract
Static magnetic order of quasi two-dimensional FeAs compounds Sr4A2O6-xFe2As2, with A = Sc and V, has been detected by 57Fe Moessbauer and muon spin relaxation (μSR) spectroscopies. The non-superconducting stoichiometric (x = 0) A = Sc system exhibits a static internal/hyperfine magnetic field both at the 57Fe and μ+ sites, indicating antiferromagnetic order of Fe moments below TN = 35 K with ~ 0.1 Bohr magneton per Fe at T = 2 K. The superconducting and oxygen deficient (x = 0.4) A = V system exhibits a static internal field only at the μ+ site below TN ~ 40 K, indicating static magnetic order of V moments co-existing with superconductivity without freezing of Fe moments. These results suggest that the 42622 FeAs systems belong to the same paradigm with the 1111 and 122 FeAs systems with respect to magnetic behavior of Fe moments.
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References in corpus (24)
- Superconductivity at 38 K in the iron arsenide (Ba1-xKx)Fe2As2
- Magnetic Order versus superconductivity in the Iron-based layered La(O1-xFx)FeAs systems
- 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
- Structural and magnetic phase diagram of CeFeAsO1-xFx and its relationship to high-temperature superconductivity
- Superconductivity and Phase Diagram in the Iron-based Arsenic-oxides ReFeAsO1-delta (Re = rare earth metal) without F-Doping
- Pressure induced superconductivity in CaFeAs
- Superconductivity at 25 K in hole doped
- Superconductivity up to 29 K in SrFe2As2 and BaFe2As2 at high pressures
- The electronic phase diagram of the LaO1-xFxFeAs superconductor
- Coexistence of static magnetism and superconductivity in SmFeAsO1-xFx as revealed by muon spin rotation
- Control via electron count of the competition between magnetism and superconductivity in cobalt and nickel doped NaFeAs
- Influence of the rare-earth element on the effects of the structural and magnetic phase transitions in CeFeAsO, PrFeAsO, and NdFeAsO
- New iron-based arsenide oxides (Fe2As2)(Sr4M2O6)(M = Sc, Cr)
- Second Homologous Series of Iron Pnictide Oxide Superconductors (Fe2As2)(Can+2(Al,Ti)nOy)[n = 2,3,4]
- Self doping effect and successive magnetic transitions in superconducting SrVFeAsO
- SrVOFeAs as Compared to Other Fe-based Superconductors
- SrVOFeAs: A Nanolayered Bimetallic Iron Pnictide Superconductor
- Energy-scale phenomenology and pairing via resonant spin-charge motion in FeAs, CuO, heavy-fermion and other exotic superconductors
- Non-stoichiometry and the magnetic structure of Sr2CrO3FeAs
- Suppression of superconductivity by V-doping and possible magnetic order in Sr2VO3FeAs
- Structural and transport properties of Sr2VO{3-delta}FeAs superconductors with different oxygen deficiencies
- Pressure Dependence of Superconducting Transition Temperature on Perovskite-Type Fe-Based Superconductors and NMR Study of Sr2VFeAsO3
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- Weak magnetism and the Mott-state of vanadium in superconducting Sr2VO3FeAs
- Antiferromagnetic Order and Superconductivity in Sr4(Mg0.5-xTi0.5+x)2O6Fe2As2 with Electron Doping: 75As-NMR Study
- Superconducting transition temperatures in the electronic and magnetic phase diagrams of Sr2VFeAsO3-delta, a superconductor
- High- Iron-phosphide Superconductivity Enhanced by Reemergent Antiferromagnetic Spin Fluctuations in (SrScO)Fe(AsP) probed by NMR
- Coupled Magnetic and Superconducting Transitions in SrVOFeAs Under Pressure
- Role of Vanadium-Oxide Layer in Electronic State of SrVFeAsO with Oxygen Deficiency