Department of Electrical and Computer Engineering, and NUSNNI, National University of Singapore, Singapore, 117576, Singapore.
Centre for Advanced 2D Materials, National University of Singapore, Singapore, 117546, Singapore.
Nat Commun. 2019 Mar 20;10(1):1290. doi: 10.1038/s41467-019-09208-8.
The nature of Fermi surface defines the physical properties of conductors and many physical phenomena can be traced to its shape. Although the recent discovery of a current-dependent nonlinear magnetoresistance in spin-polarized non-magnetic materials has attracted considerable attention in spintronics, correlations between this phenomenon and the underlying fermiology remain unexplored. Here, we report the observation of nonlinear magnetoresistance at room temperature in a semimetal WTe, with an interesting temperature-driven inversion. Theoretical calculations reproduce the nonlinear transport measurements and allow us to attribute the inversion to temperature-induced changes in Fermi surface convexity. We also report a large anisotropy of nonlinear magnetoresistance in WTe, due to its low symmetry of Fermi surfaces. The good agreement between experiments and theoretical modeling reveals the critical role of Fermi surface topology and convexity on the nonlinear magneto-response. These results lay a new path to explore ramifications of distinct fermiology for nonlinear transport in condensed-matter.
费米面的性质决定了导体的物理性质,许多物理现象都可以追溯到它的形状。尽管最近在自旋极化非磁性材料中发现了与电流有关的非线性磁电阻,但在自旋电子学中引起了相当大的关注,但这种现象与基础费米理论之间的关系仍未得到探索。在这里,我们报告了在半金属 WTe 中室温下观察到的非线性磁电阻,其具有有趣的温度驱动反转。理论计算再现了非线性输运测量结果,并使我们能够将反转归因于费米面凸度随温度的变化。我们还报告了 WTe 中非线性磁电阻的大各向异性,这是由于其费米面的低对称性。实验和理论建模之间的良好一致性表明,费米面拓扑和凸度对非线性磁响应起着关键作用。这些结果为探索凝聚态物质中不同费米理论对非线性输运的影响开辟了新途径。