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Fe(1+y)Se(x)Te(1-x) 在磁性和超导相中的磁激发。

Magnetic excitations of Fe(1+y)Se(x)Te(1-x) in magnetic and superconductive phases.

机构信息

Department of Physics, Clarendon Laboratory, Oxford University, Oxford OX1 3PU, UK.

出版信息

J Phys Condens Matter. 2010 Apr 14;22(14):142202. doi: 10.1088/0953-8984/22/14/142202. Epub 2010 Mar 19.

Abstract

We have used inelastic neutron scattering and muon-spin rotation to compare the low energy magnetic excitations in single crystals of superconducting Fe(1.01)Se(0.50)Te(0.50) and non-superconducting Fe(1.10)Se(0.25)Te(0.75). We confirm the existence of a spin resonance in the superconducting phase of Fe(1.01)Se(0.50)Te(0.50), at an energy of 7 meV and a wavevector of (1/2, 1/2, 0). The non-superconducting sample exhibits two incommensurate magnetic excitations at (1/2, 1/2, 0) ± (0.18, - 0.18, 0) which rise steeply in energy, but no resonance is observed at low energies. A strongly dispersive low energy magnetic excitation is also observed in Fe(1.10)Se(0.25)Te(0.75) close to the commensurate antiferromagnetic ordering wavevector (1/2 - δ, 0, 1/2), where δ≈0.03. The magnetic correlations in both samples are found to be quasi-two-dimensional in character and persist well above the magnetic (Fe(1.10)Se(0.25)Te(0.75)) and superconducting (Fe(1.01)Se(0.50)Te(0.50)) transition temperatures.

摘要

我们使用非弹性中子散射和 muon-自旋旋转技术比较了超导 Fe(1.01)Se(0.50)Te(0.50)和非超导 Fe(1.10)Se(0.25)Te(0.75)单晶中的低能磁激发。我们证实了在 Fe(1.01)Se(0.50)Te(0.50)的超导相中存在一个自旋共振,能量为 7 meV,波矢为 (1/2, 1/2, 0)。非超导样品在 (1/2, 1/2, 0) ± (0.18, - 0.18, 0)处表现出两个不相干的磁激发,能量急剧增加,但在低能下没有观察到共振。在 Fe(1.10)Se(0.25)Te(0.75)中,我们还观察到一个强烈色散的低能磁激发,接近准一维的铁磁有序波矢 (1/2 - δ, 0, 1/2),其中 δ≈0.03。在这两个样品中,磁相关性都被发现具有准二维的特征,并且在磁(Fe(1.10)Se(0.25)Te(0.75))和超导(Fe(1.01)Se(0.50)Te(0.50))转变温度之上仍能很好地保持。

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