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Development of a ferromagnetic component in the superconducting state of Fe-excess Fe1.12Te1-xSex by electronic charge redistribution

机译:通过电子电荷再分布形成Fe超额Fe 1.12 Te 1-x Se x 超导状态的铁磁成分

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The general picture established so far for the links between superconductivity and magnetic ordering in iron chalcogenide Fe1+y(Te1-xSex) is that the substitution of Se for Te directly drives the system from the antiferromagnetic end into the superconducting regime. Here, we report on the observation of a ferromagnetic component that developed together with the superconducting transition in Fe-excess Fe1.12Te1-xSex crystals using neutron and x-ray diffractions, resistivity, magnetic susceptibility and magnetization measurements. The superconducting transition is accompanied by a negative thermal expansion of the crystalline unit cell and an electronic charge redistribution, where a small portion of the electronic charge flows from around the Fe sites toward the Te/Se sites. First-principles calculations show consistent results, revealing that the excess Fe ions play a more significant role in affecting the magnetic property in the superconducting state than in the normal state and the occurrence of an electronic charge redistribution through the superconducting transition.
机译:到目前为止,已为硫属元素铁 1 + y (Te 1-x Se x )中的超导性和磁有序关系建立了总体图这是因为用Se代替Te直接将系统从反铁磁端驱动到超导状态。在这里,我们报道了在超铁中Fe 1.12 Te 1-x Se x 使用中子和X射线衍射,电阻率,磁化率和磁化强度测量的晶体。超导转变伴随着晶胞的负热膨胀和电荷的重新分布,其中一小部分电荷从Fe位周围流向Te / Se位。第一性原理计算显示出一致的结果,表明过量的Fe离子在影响超导状态下的磁性能方面比在正常状态下以及通过超导转变发生电荷重新分布方面起着更重要的作用。

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