Bipartite magnetic parent phases in the iron-oxypnictide superconductor
arXiv:1403.6021 · doi:10.1038/NPHYS2906
Abstract
High-temperature (high-) superconductivity appears as a consequence of the carrier-doping of an undoped parent compound exhibiting antiferromagnetic order; thereby, ground-state properties of the parent compound are closely relevant to the superconducting state. On the basis of the concept, a spin-fluctuation has been addressed as an origin of pairing of the superconducting electrons in cuprates. Whereas, there is growing interest in the pairing mechanism such as an unconventional spin-fluctuation or an advanced orbital-fluctuation due to the characteristic multi-orbital system in iron-pnictides. Here, we report the discovery of an antiferromagnetic order as well as a unique structural transition in electron-overdoped LaFeAsOH ( ~ 0.5), whereby another parent phase was uncovered, albeit heavily doped. The unprecedented two-dome superconducting phases observed in this material can be interpreted as a consequence of the carrier-doping starting from the original at and advanced at parent phases toward the intermediate region. The bipartite parent phases with distinct physical properties in the second magnetic phase provide us with an interesting example to illustrate the intimate interplay among the magnetic interaction, structural change and orbital degree of freedom in iron-pnictides.
12pages, 4 figures
References in corpus (16)
- 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
- Unconventional pairing originating from disconnected Fermi surfaces in superconducting LaFeAsOF}
- High-temperature superconductivity in iron-based materials
- LaFeAsOF: A low carrier density superconductor near itinerant magnetism
- Magnetic order in BaFe2As2, the parent compound of the FeAs based superconductors in a new structural family
- Origin of the ~150 K Anomaly in LaOFeAs; Competing Antiferromagnetic Superexchange Interactions, Frustration, and Structural Phase Transition
- The electronic phase diagram of the LaO1-xFxFeAs superconductor
- Magnetism in Fe-based superconductors
- Commensurate Spin Density Wave in LaOFeAs: A Local Probe Study
- Orbital-Selective Mott transition out of band degeneracy lifting
- Iron-based layered superconductor LaOFFeAs: an antiferromagnetic semimetal
- Neutron Studies of the Iron-based Family of High TC Magnetic Superconductors
- Superconductivity: Exotic Commonalities in Phase and Mode
- Insular superconductivity in Co-doped iron pnictide CaFeCoAsF
Cited by in corpus (43)
- Iron-Based Superconductors: current status of materials and pairing mechanism
- Exploration of new superconductors and functional materials and fabrication of superconducting tapes and wires of iron pnictides
- Pressure-induced Reemergence of Superconductivity in Topological Kagome Metal CsV3Sb5
- Hydrogen Ordering and New Polymorph of Layered Perovskite Oxyhydrides: Sr2VO4-xHx
- Superconductivity and its mechanism in an ab initio model for electron-doped LaFeAsO
- High-Tc superconductivity up to 55 K under high pressure in the heavily electron doped Lix(NH3)yFe2Se2 single crystal
- Superconductivity at 52 K in hydrogen-substituted LaFeAsO1-xHx under high pressure
- Emergence of Novel Antiferromagnetic Order Intervening between Two Superconducting Phases in LaFe(As_1-x_P_x_)O: 31P-NMR Studies
- A large moment antiferromagnetic order in overdoped high-Tc superconductor 154SmFeAsO1-xDx
- Multigap superconductivity in ThAsFeN investigated using muSR measurements
- Origin of the density wave instability in trilayer nickelate LaNiO revealed by optical and ultrafast spectroscopy
- Quantum critical behavior in heavily doped LaFeAsOH pnictide superconductors analyzed using nuclear magnetic resonance
- Investigation of hydrogen incorporations in bulk infinite-layer nickelates
- Heavy Electron doping-induced antiferromagnetic phase as the parent for iron-oxypnictide superconductor LaFeAsO1-xHx
- Heavily Hydride-ion-doped 1111-type Iron-based Superconductors: Synthesis, Physical Properties and Electronic Structure
- Open Quantum Dynamics Theory of Spin Relaxation: Application to SR and Low-Field NMR Spectroscopies
- Origin of the non-monotonic variance of Tc in the 1111 iron based superconductors with isovalent doping
- High pressure growth and electron transport properties of superconducting SmFeAsO1-xHx single crystals
- Origin of doping-induced suppression and reemergence of magnetism in LaFeAsOH
- Co-doping effects on magnetism and superconductivity in the 112-type EuFeAs2 system
- Three superconducting phases with different categories of pairing in hole- and electron-doped LaFeAsPO
- Thermodynamic electric quadrupole moments of nematic phases from first-principles calculation
- Superconducting Order Parameter and Bosonic Mode in Hydrogen-Substituted NdFeAsOH Revealed by Multiple Andreev Reflection Spectroscopy
- Quantum Phase transition under pressure in a heavily hydrogen-doped iron-based superconductor LaFeAsO
- Bulk and surface Dirac states accompanied by two superconducting domes in FeSe-based superconductors
- Open quantum dynamics theory for a complex subenvironment system with a quantum thermostat: Application to a spin heat bath
- Effective interaction for vanadium oxyhydrides SrVOH ( and ): A constrained-RPA study
- Magnetism driven by strong electronic correlation in the heavily carrier-doped iron oxypnictide LaFeAsOH
- Anomalous Pressure Dependence of the Superconducting Transition Temperature in TlNiSeS
- Crossover between magnetism and superconductivity in low H-doped LaFeAsO
- Unconventional Multi-gap Superconductivity and Antiferromagnetic Spin Fluctuations in New Iron-arsenide LaFe2As2 in Heavily Electron-doped Regime
- Disappearance and Survival of Superconductivity in FeSe under High Pressure
- Quantifying the stability of the anion ordering in SrVOH
- Impurity effects on spin dynamics in magnetic and superconducting iron pnictides and chalcogenides
- Inter- to Intra-Layer Resistivity Anisotropy of NdFeAs(O,H) with Various Hydrogen Concentrations
- Quantum dynamics of hydrogen in iron-based superconductor LaFeAsO0.9D0.1 measured with inelastic neutron spectroscopy
- Enhanced superconductivity and moderate spin fluctuations suppressed at low energies in heavily electron-doped La1111-based superconductor
- Universal quasi-degenerate orbital origin of two-dome phases in iron pnictide superconductors
- Suppression of superconductivity and structural phase transition against pressure in Ca(IrAs)(FeIrAs)
- Dynamics of orbital degrees of freedom probed via isotope Sb nuclear quadrupole moments in Sb-substituted iron-pnictide superconductors
- Pressure-Induced Superconductivity from Doping-Induced Antiferromagnetic Phase of 112-type CaLaFeAs
- Superconductivity of 30.4 K and its Reemergence under Pressure in Fe1.11Se Synthesized via Ion-exchange and De-intercalation Reaction
- Orbital driven two-dome superconducting phases in multiorbital superconductors