论文标题
磁性半准候选埃比匹层中的各向异性和极端磁性
Anisotropic and extreme magnetoresistance in the magnetic semimetal candidate Erbium monobismuthide
论文作者
论文摘要
稀有地球剂表现出丰富的身体行为,最著名的是在其基态下旋转和轨道订单。在这里,我们种植Erbi单晶并研究其磁性,热和电性能。对磁熵和磁化的分析表明,ERBI中的弱磁各向异性可能来自混合效应,即ER3+(4F11)混合的各向异性基态与各向同性激发态通过交换相互作用。在低温下,观察到具有抛物线磁场依赖性的极大的磁路(〜104%),可以归因于几乎完美的电子孔补偿和超高载流子迁移率。当磁场旋转在AB(AC)平面和B轴中的电流流动时,ERBI中的角磁倍率显示出双重(四倍)对称性。在Labi中也观察到类似的情况,其中各向异性费米表面主导了低温转运。我们的理论计算表明,在费米级附近Erbi在电子带结构中与Labi具有相似性。这些发现表明,Erbi的角磁扰可主要取决于其各向异性费米表面拓扑。此外,还讨论了其他几种可能性的贡献,包括旋转依赖性散射,自旋轨道散射以及与ERBI角磁敏感的消除相关性。
Rare-earth monopnictides display rich physical behaviors, featuring most notably spin and orbital orders in their ground state. Here, we grow ErBi single crystal and study its magnetic, thermal and electrical properties. An analysis of the magnetic entropy and magnetization indicates that the weak magnetic anisotropy in ErBi possibly derives from the mixing effect, namely the anisotropic ground state of Er3+ (4f11) mingles with the isotropic excited state through exchange interaction. At low temperature, an extremely large magnetoresistance (~104%) with a parabolic magnetic-field dependence is observed, which can be ascribed to the nearly perfect electron-hole compensation and ultrahigh carrier mobility. When the magnetic field is rotated in the ab (ac) plane and the current flows in the b axis, the angular magnetoresistance in ErBi shows a twofold (fourfold) symmetry. Similar case has been observed in LaBi where the anisotropic Fermi surface dominates the low-temperature transport. Our theoretical calculation suggests that near the Fermi level ErBi shares similarity with LaBi in the electronic band structures. These findings indicate that the angular magnetoresistance of ErBi could be mainly determined by its anisotropic Fermi surface topology. Besides, contributions from several other possibilities, including the spin-dependent scattering, spin-orbit scattering, and demagnetization correlation to the angular magnetoresistance of ErBi are also discussed.