论文标题
在非中心磁性Weyl半缘中的压力调谐域壁手性
Pressure tuning domain-wall chirality in noncentrosymmetric magnetic Weyl semimetal CeAlGe
论文作者
论文摘要
已经提出了拓扑磁性Weyl半法,以容纳可控的手性域壁,这些壁在设备应用中具有很大的前景。为了在应用中利用它们,重要的是要有适当的调整和操纵这些域墙的方法。一种可能的手段是通过磁弹性耦合。最近提出的稀有地球参与$ r $ al $ x $($ r $ =稀土,$ x $ = si and ge)家庭磁性Weyl Semimetals可能会提供这样的平台。在这里,我们介绍了在静水压力下的CEALGE的运输和热力学特性。我们发现压力增强了CEALGE中的抗铁磁交换,但基本上保留了其磁性结构。在磁性有序状态内观察到具有明显环形形状的大拓扑效果,并在压力下分为两个区域。这种不寻常的电磁反应被推断为手性磁性域壁的结果。其在压力下的进化前所未有的伴随和防铁磁顺序的重新进入,这强烈表明在非中心磁性WEYL半含量中通过磁弹性耦合打开/关闭这种电磁反应的能力。
Topological magnetic Weyl semimetals have been proposed to host controllable chiral domain walls which bear a great prospect in device applications. To exploit them in applications, it is important to have a proper way to tune and manipulate these domain walls. One possible means is through magnetoelastic coupling. The involvement of rare earth in the lately proposed $R$Al$X$ ($R$=rare earth, $X$=Si and Ge) family magnetic Weyl semimetals may provide such a platform. Here we present transport and thermodynamic properties of CeAlGe under hydrostatic pressure. We find that pressure enhances the antiferromagnetic exchange in CeAlGe but essentially retains its magnetic structure. Large topological Hall effect with pronounced loop shape is observed within the magnetically ordered state, and it splits into two regions under pressure. Such an unusual electromagnetic response is inferred to be a consequence of chiral magnetic domain walls. The unprecedented concomitance of its evolution under pressure and the reentrance of antiferromagnetic order strongly suggest the capability of switching on/off this electromagnetic response in noncentrosymmetric magnetic Weyl semimetals via magnetoelastic coupling.