Large negative magnetoresistance in the new antiferromagnetic rare-earth dichalcogenide EuTe
arXiv:1909.08340 · doi:10.1103/PhysRevMaterials.4.013405
Abstract
We report the synthesis and characterization of a rare-earth dichalcogenide EuTe. An antiferromagnetic transition was found at T = 11 K. The antiferromagnetic order can be tuned by an applied magnetic field to access a first-order spin flop transition and a spin flip transition. These transitions are associated with a giant negative magnetoresistance with a value of nearly 100\%. Heat capacity measurements reveal strong electronic correlations and a reduced magnetic entropy. Furthermore, density functional theory calculations demonstrate that the electrons near the Fermi surface mainly originate from the Te 5 orbitals and the magnetism is dominated by localized electrons from the Eu 4 orbitals. These results suggest that both the RKKY and Kondo interactions between the local moments and itinerant electrons play crucial roles in the magnetism and large negative magnetoresistance of EuTe.
7 pages, 6 figures