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APS -APS March Meeting 2017 - Event - A microscopic solution to the magnetic detwinning mystery in EuFe$_2$As$_2$

机译:APS -APS 2017年3月会议-活动-EuFe $ _2 $ As $ _2 $中解决磁性解开之谜的微观解决方案

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One of the greatest recent advances in studying nematic phenomena in Fe-based superconductorswas the mechanical detwinning of the 122-family compounds. Unfortunately, these techniques generate considerable stressin the investigated samples, which contaminates the results. Recently, we observed that a minuscule magnetic field of the order of 0.1 T irreversibly and persistently detwins EuFe$_2$As$_2$, opening an entirely new avenue for addressing nematicityfootnote{PRL 113,227001 (2014)}. However, further development was hindered by the absence of a microscopic theory explaining this magnetic detwinning. In fact, Eu$^{2+}$ has zero orbital moment and does not couple to the lattice, and its exchange coupling with the Fe sublattice cancels by symmetry. Moreover, further increase of the field to $sim$ 1 T leads to a reorientation of Fe domains, while even larger fields $sim$10 T reorient the domains once again.We will present a new microscopic model, based on a sizable biquadratic coupling between the Fe 3$d$ and Eu 4$f$ moments. This model quantitatively explains our old and new magnetization and neutron diffraction data, thus removing the veil of mystery and finally opening the door to full-scale research into magnetic detwinning and nematicity in Fe-based superconductors.
机译:在研究铁基超导体中向列现象的最新进展中,最重要的进展之一就是对122族化合物进行了机械解链。不幸的是,这些技术在所研究的样品中产生了很大的压力,污染了结果。最近,我们观察到0.1 T量级的微小磁场不可逆且持续地扭曲EuFe $ _2 $ As $ _2 $,从而为解决向列性脚注开辟了一条全新的道路{PRL 113,227001(2014)}。然而,由于缺乏解释这种磁性解缠现象的微观理论,阻碍了进一步的发展。实际上,Eu $ ^ {2 +} $的轨道矩为零,并且不耦合至晶格,并且其与Fe子晶格的交换耦合被对称性抵消。此外,磁场进一步增加到$ sim $ 1 T会导致铁结构域的重新定向,而更大的磁场$ sim $ 10 T会再次对铁结构域进行重新定向。我们将提出一个新的微观模型,该模型基于两者之间相当大的双二次耦合Fe 3 $ d $和Eu 4 $ f $时刻。该模型定量地解释了我们的新旧磁化和中子衍射数据,从而消除了神秘面纱,并最终为铁基超导体中的磁解缠和向列性的全面研究打开了大门。

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