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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Evidence of Ba-substitution induced spin-canting in the magnetic Weyl semimetal EuCd_2As_2
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Evidence of Ba-substitution induced spin-canting in the magnetic Weyl semimetal EuCd_2As_2

机译:Ba-替代的证据诱导磁性Weyl半型EUCD_2AS_2中的旋倾

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Recently EuCd_2As_2 was predicted to be a magnetic Weyl semimetal with a lone pair of Weyl nodes generated by A-type antiferromagnetism and protected by a rotational symmetry. However, it was soon discovered that the actual magnetic structure broke the rotational symmetry and internal pressure was later suggested as a route to stabilize the desired magnetic state. In this work we test this prediction by synthesizing a series of Eu_(1-x)Ba_xCd_2As_2 single crystals and studying their structural, magnetic, and transport properties via both experimental techniques and first-principles calculations. We find that small concentrations of Ba (~3%-10%) lead to a small out-of-plane canting of the Eu moment. However, for higher concentrations this effect is suppressed and a nearly in-plane model is recovered. Studying the transport properties we find that all compositions show evidence of an anomalous Hall effect dominated by the intrinsic mechanism as well as large negative magnetoresistances in the longitudinal channel. A nonmonotonic evolution of the transport properties is seen across the series which correlates to the proposed canting suggesting canting may enhance the topological effects. Careful density functional theory calculations using an all-electron approach revise prior predictions finding a purely ferromagnetic ground state with in-plane moments for both the EuCd_2As_2 and Eu_(0.5)Ba_(0.5)Cd_2As_2 compounds, corroborating our experimental findings. This work suggests that Ba substitution can tune the magnetic properties in unexpected ways which correlate to changes in measures of topological properties, encouraging future work to locate the ideal Ba concentration for Eu moment canting.
机译:预测最近的EUCD_2AS_2是具有由型反铁磁体产生的孤立的威基节点的磁性威基半型,并且由旋转对称保护。然而,很快发现实际的磁性结构破坏了旋转对称性,并且后来建议内部压力作为稳定所需磁力状态的途径。在这项工作中,我们通过合成一系列EU_(1-X)BA_XCD_2AS_2单晶并通过实验技术和第一原理计算来研究它们的一系列EU_(1-X)BA_XCD_2AS_2和研究它们的结构,磁性和运输性能来测试该预测。我们发现小浓度的BA(〜3%-10%)导致欧盟时刻的小面凝固。然而,对于较高浓度,这种效果被抑制,并且恢复了几乎平面的模型。研究运输性质,我们发现所有组合物都显示出由本征机制主导的异常霍尔效果以及纵向通道中的大负磁阻的证据。在整个系列中看到运输特性的非单调演化,其与建议的倾抗相关,表明倾倒可能会增强拓扑效应。使用全电子方法进行仔细的密度函数理论计算,修改了以纯粹的纯度矩的预测来修改纯粹的铁磁性接地状态,适用于平面为均匀的瞬间,用于EUCD_2AS_2和EU_(0.5)BA_(0.5)CD_2AS_2化合物,证实我们的实验结果。这项工作表明,BA替代可以以意想不到的方式调整磁性,与拓扑特性测量的变化相关,鼓励未来的工作来定位欧盟时刻倾斜的理想BA集中。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2020年第10期|104404.1-104404.10|共10页
  • 作者单位

    Materials Science and Technology Division Oak Ridge National Laboratory Oak Ridge Tennessee 37831 USA;

    Materials Science and Technology Division Oak Ridge National Laboratory Oak Ridge Tennessee 37831 USA;

    Neutron Scattering Division Oak Ridge National Laboratory Oak Ridge Tennessee 37831 USA;

    Materials Science and Technology Division Oak Ridge National Laboratory Oak Ridge Tennessee 37831 USA;

    Chemical Sciences Division Oak Ridge National Laboratory Oak Ridge Tennessee 37831 USA;

    Neutron Scattering Division Oak Ridge National Laboratory Oak Ridge Tennessee 37831 USA;

    Materials Science and Technology Division Oak Ridge National Laboratory Oak Ridge Tennessee 37831 USA;

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