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Unprecedented anisotropic metallic state in undoped iron arsenide BaFe2As2 revealed by optical spectroscopy

机译:光谱学揭示未掺杂砷化铁BaFe2As2中前所未有的各向异性金属态

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摘要

An ordered phase showing remarkable electronic anisotropy in proximity to the superconducting phase is now a hot issue in the field of high-transition-temperature superconductivity. As in the case of copper oxides, superconductivity in iron arsenides competes or coexists with such an ordered phase. Undoped and underdoped iron arsenides have a magnetostructural ordered phase exhibiting stripe-like antiferromagnetic spin order accompanied by an orthorhombic lattice distortion; both the spin order and lattice distortion break the tetragonal symmetry of crystals of these compounds. In this ordered state, anisotropy of in-plane electrical resistivity is anomalous and difficult to attribute simply to the spin order and/or the lattice distortion. Here, we present the anisotropic optical spectra measured on detwinned BaFe2As2 crystals with light polarization parallel to the Fe planes. Pronounced anisotropy is observed in the spectra, persisting up to an unexpectedly high photon energy of about 2 eV. Such anisotropy arises from an anisotropic energy gap opening below and slightly above the onset of the order. Detailed analysis of the optical spectra reveals an unprecedented electronic state in the ordered phase.
机译:在超导相附近显示出显着的电子各向异性的有序相现在是高转变温度超导性领域中的热门问题。与氧化铜一样,砷化铁中的超导电性与这种有序相竞争或共存。未掺杂和未掺杂的砷化铁具有磁结构有序相,表现出带状反铁磁自旋顺序,并伴有正交晶格畸变。自旋顺序和晶格畸变都破坏了这些化合物晶体的四方对称性。在这种有序状态下,面内电阻率的各向异性是异常的,并且难以简单地归因于自旋次序和/或晶格畸变。在这里,我们介绍了在脱偏振的BaFe2As2晶体上测量的各向异性光谱,其偏振平行于Fe平面。在光谱中观察到明显的各向异性,一直持续到约2 eV的出乎意料的高光子能量。这种各向异性是由各向异性能隙在阶次的开始以下和稍上方引起的。光谱的详细分析揭示了有序相中前所未有的电子状态。

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