论文标题
Weyl Semimetal Pralge中的磁性和异常转运:可能通往轴向仪的途径
Magnetism and anomalous transport in the Weyl semimetal PrAlGe: Possible route to axial gauge fields
论文作者
论文摘要
在磁性磁性破坏时间转换对称性的磁性Weyl半法中,预计大型磁敏感的异常转运反应可能对拓扑旋转型有用。因此,新磁性Weyl半法的鉴定在很高的需求中,特别是因为在这些系统中,使用磁场可以轻松地修改Weyl节点构型。在这里,我们通过实验探索磁性半学pralge,并在易于轴pr磁力磁性与异常大厅和Nernst效应之间揭示直接对应关系。由于与第一原理计算的良好定量一致性的异常霍尔电导率和NERNST效应的大小,我们将PRALGE视为一个系统,磁场可以通过PR磁化直接连接到Weyl节点。此外,我们发现纳米级纹理磁性域壁密度低,主要轴轴铁磁基态共存。我们描述了这样的纳米级磁纹理如何用作韦尔费米子的可调轴向尺度场的局部平台。
In magnetic Weyl semimetals, where magnetism breaks time-reversal symmetry, large magnetically sensitive anomalous transport responses are anticipated that could be useful for topological spintronics. The identification of new magnetic Weyl semimetals is therefore in high demand, particularly since in these systems Weyl node configurations may be easily modified using magnetic fields. Here we explore experimentally the magnetic semimetal PrAlGe, and unveil a direct correspondence between easy-axis Pr ferromagnetism and anomalous Hall and Nernst effects. With sizes of both the anomalous Hall conductivity and Nernst effect in good quantitative agreement with first principles calculations, we identify PrAlGe as a system where magnetic fields can connect directly to Weyl nodes via the Pr magnetization. Furthermore, we find the predominantly easy-axis ferromagnetic ground state co-exists with a low density of nanoscale textured magnetic domain walls. We describe how such nanoscale magnetic textures could serve as a local platform for tunable axial gauge fields of Weyl fermions.