paper

Current direction dependent magnetotransport in CuTe

arXiv:2310.02675 · doi:10.1103/PhysRevB.108.115162

Abstract

Despite being a layered, easily-exfoliated compound, copper monotelluride (CuTe) features an unusual quasi-one-dimensional charge density wave below K. Within a CuTe layer, the electrical resistivity depends sensitively on the direction of the electrical current. Here, we use magnetotransport to probe the metallic state of CuTe with two distinct in-plane current directions. When the current flows along the -axis (), the magnetoresistance exhibits a downward curvature as the magnetic field increases. On the other hand, when the current is along the -axis (), the magnetoresistance shows the opposite curvature. Our analysis uncovers a violation of Kohler scaling, but only for . Shubnikov-de Haas oscillations are detected at low temperatures. Our results shed light on the nature of the metallic state in CuTe with the development of the charge density wave.

6 pages, 4 figures