Cichorek T, Bochenek Ł, Juraszek J, Sharlai Yu V, Mikitik G P
Institute of Low Temperature and Structure Research, Polish Academy of Sciences, 50-422, Wrocław, Poland.
B. Verkin Institute for Low Temperature Physics and Engineering, Ukrainian Academy of Sciences, Kharkiv, 61103, Ukraine.
Nat Commun. 2022 Jul 5;13(1):3868. doi: 10.1038/s41467-022-31321-4.
Thus far, a detection of the Dirac or Weyl fermions in topological semimetals remains often elusive, since in these materials conventional charge carriers exist as well. Here, measuring a field-induced length change of the prototype Weyl semimetal TaAs at low temperatures, we find that its c-axis magnetostriction amounts to relatively large values whereas the a-axis magnetostriction exhibits strong variations with changing the orientation of the applied magnetic field. It is discovered that at magnetic fields above the ultra-quantum limit, the magnetostriction of TaAs contains a linear-in-field term, which, as we show, is a hallmark of the Weyl fermions in a material. Developing a theory for the magnetostriction of noncentrosymmetric topological semimetals and applying it to TaAs, we additionally find several parameters characterizing the interaction between the relativistic fermions and elastic degrees of freedom in this semimetal. Our study shows how dilatometry can be used to unveil Weyl fermions in candidate topological semimetals.
迄今为止,在拓扑半金属中探测狄拉克或外尔费米子往往仍然难以实现,因为在这些材料中也存在传统的电荷载流子。在此,通过测量原型外尔半金属TaAs在低温下由磁场引起的长度变化,我们发现其c轴磁致伸缩达到相对较大的值,而a轴磁致伸缩随外加磁场方向的改变呈现出强烈变化。我们发现,在高于超量子极限的磁场下,TaAs的磁致伸缩包含一个与场强呈线性关系的项,正如我们所表明的,这是材料中外尔费米子的一个标志。通过发展一种非中心对称拓扑半金属磁致伸缩的理论并将其应用于TaAs,我们还发现了几个表征该半金属中相对论费米子与弹性自由度之间相互作用的参数。我们的研究展示了如何利用膨胀测量法在候选拓扑半金属中揭示外尔费米子。