Spin fluctuations away from (pi,0) in the superconducting phase of molecular-intercalated FeSe
arXiv:1305.4898 · doi:10.1103/PhysRevB.87.220508
Abstract
Magnetic fluctuations in the molecular-intercalated FeSe superconductor Li{x}(ND2){y}(ND3){1-y}Fe2Se2 (Tc = 43K) have been measured by inelastic neutron scattering from a powder sample. The strongest magnetic scattering is observed at a wave vector Q ~ 1.4 A^{-1}, which is not consistent with the (pi,0) nesting wave vector that characterizes magnetic fluctuations in several other iron-based superconductors, but is close to the (pi, pi/2) position found for A{x}Fe{2-y}Se2 systems. At the energies probed (~ 5kB Tc), the magnetic scattering increases in intensity with decreasing temperature below Tc, consistent with the superconductivity-induced magnetic resonance found in other iron-based superconductors.
5 pages, 4 figures
References in corpus (24)
- A Common Thread: the pairing interaction for the unconventional superconductors
- Superconductivity at 36 K in beta-Fe1.01Se with the compression of the interlayer separation under pressure
- Superconductivity close to magnetic instability in Fe(Se1-xTex)0.82
- Tellurium substitution effect on superconductivity of the alpha-phase Iron Selenide
- Magnetism and its microscopic origin in iron-based high-temperature superconductors
- Fe-based high temperature superconductivity with Tc=31K bordering an insulating antiferromagnet in (Tl,K)FexSe2 Crystals
- Superconductivity at 32 K in single crystal RbFeSe}
- The Unexpected Properties of Alkali Metal Iron Selenide Superconductors
- Theory of magnetic excitations in iron-based layered superconductors
- Magnetism in Fe-based superconductors
- Spin Gap and Resonance at the Nesting Wavevector in Superconducting FeSe0.4Te0.6
- d-wave pairing from spin fluctuations in the KxFe{2-y}Se2 superconductors
- Neutron scattering as a probe of the Fe-pnicitide superconducting gap
- Superconducting Phases in Potassium-Intercalated Iron Selenides
- Neutron Scattering Resonance and the Fe-pnictide Superconducting Gap
- Synthesis of a new alkali metal-organic solvent intercalated iron selenide superconductor with Tc{\approx}45K
- Spin fluctuations in LiFeAs observed by neutron scattering
- Superconductivity at Tc = 44 K in LixFe2Se2(NH3)y
- Conformity of spin fluctuations in alkali-metal iron selenide superconductors inferred from the observation of a magnetic resonant mode in K(x)Fe(2-y)Se(2)
- Spin-wave excitations and superconducting resonant mode in Cs(x)Fe(2-y)Se2
- Antiferromagnetic spin excitations in single crystals of nonsuperconducting Li1-xFeAs
- Magnetic phase separation and superfluid density measurements in alkali metal-organic solvent intercalated iron selenide superconductor Lix(C5H5N)yFe2-zSe2
- Evolution of the neutron resonances in AFe2Se2
- Effect of the Wyckoff position of K atom on the crystal structure and electronic properties of KFeSe compound
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- Antiferromagnetic ground state with pair-checkboard order in FeSe
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- Possible spin excitation structure in monolayer FeSe grown on SrTiO
- Possible pairing symmetry in the FeSe-based superconductors determined by quasiparticle interference
- In-gap bound states induced by a single nonmagnetic impurity in sign-preserving s-wave superconductors with incipient bands
- Uncovering double-stripe and plaquette antiferromagnetic states in the one-band Hubbard model on a frustrated square lattice
- An improved particle swarm optimization algorithm and its application to search for new magnetic ground states in the Hubbard model