Evolution of magnetic properties in iron-based superconductor Eu-doped CaFe2As2

K. Shrestha, L. Deng, B. Lv, C. Chu
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Abstract

This work presents the evolution of magnetic properties of EuxCa1−x Fe2As2 (0 ≤ x ≤ 1, ECFA) samples. Unlike the resistivity data, that for magnetic susceptibility χ (T) does not show any clear evidence of the spin density wave (SDW) transition. When the Curie-Weiss contribution is subtracted, a weak anomaly appears at a temperature close to the SDW transition temperature (T SDW) determined from the resistivity data. To understand the magnetic orders arising from Fe-moments and Eu2+ spins order, we have studied the doping dependence of T SDW and Eu2+ antiferromagnetic order T N . It is found that T SDW increases almost linearly with increasing x and remains nearly unchanged above x ∼ 0.4, whereas T N first appears at x ∼ 0.4 and varies almost linearly with further increasing x. These observations suggest that magnetic orders due to two sublattices are coupled to each other. The results discussed here are helpful for understanding the magnetic properties of ECFA and other iron-based superconductors.
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铁基超导体掺铕CaFe2As2磁性能的演化
本文介绍了EuxCa1−x Fe2As2(0≤x≤1,ECFA)样品的磁性能演变过程。与电阻率数据不同,磁化率χ (T)没有显示出自旋密度波(SDW)跃迁的明显证据。当减去居里-魏斯贡献时,在接近电阻率数据确定的SDW转变温度(T SDW)的温度处出现弱异常。为了理解由fe -矩和Eu2+自旋引起的磁序,我们研究了T SDW和Eu2+反铁磁序T N的掺杂依赖性。我们发现,T SDW随着x的增加几乎呈线性增加,在x ~ 0.4以上几乎保持不变,而T N首先出现在x ~ 0.4,并随着x的进一步增加几乎呈线性变化。这些观察结果表明,两个亚晶格引起的磁阶是相互耦合的。本文讨论的结果有助于理解ECFA和其他铁基超导体的磁性能。
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