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High-energy spin fluctuation in low-Tc iron-based superconductor LaFePO0.9

机译:低Tc铁基超导体LaFePO0.9的高能自旋涨落

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摘要

Spin fluctuations are widely believed to play an important role in the superconducting mechanisms of unconventional high temperature superconductors. Spin fluctuations have been observed in iron-based superconductors as well. However, in some iron-based superconductors such as LaFePO0.9, they have not been observed by inelastic neutron scattering (INS). LaFePO0.9 is an iron-based superconductor with a low superconducting transition temperature (Tc = 5 K), where line nodes are observed in the superconducting gap function. The line-node symmetry typically originates from sign reversal of the order parameter in spin-fluctuation-mediated superconductivity. This contradiction has been a long-standing mystery of this superconductor. Herein, spin fluctuations were found at high energies such as 30–50 meV with comparable intensities to an optimally doped LaFeAs(O, F). Based on this finding, the line-node symmetry can be explained naturally as spin-fluctuation-mediated superconductivity.
机译:人们普遍认为,自旋涨落在非常规高温超导体的超导机理中起着重要作用。在铁基超导体中也观察到自旋波动。但是,在诸如LaFePO0.9之类的某些铁基超导体中,非弹性中子散射(INS)并未观察到它们。 LaFePO0.9是具有低超导转变温度(Tc super = 5 K)的铁基超导体,在超导间隙函数中观察到线节点。线节点对称性通常源于自旋涨落介导的超导性中阶数参数的符号反转。这种矛盾一直是这种超导体的一个长期谜团。在此,在高能量(例如30-50memeV)下发现了自旋涨落,其强度与最佳掺杂的LaFeAs(O,F)相当。基于此发现,线节点对称性可以自然地解释为自旋涨落介导的超导性。

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