Large spin Hall conductivity in epitaxial thin films of kagome antiferromagnet MnSn at room temperature
arXiv:2209.02647
Abstract
MnSn is a non-collinear antiferromagnetic quantum material that exhibits a magnetic Weyl semimetallic state and has great potential for efficient memory devices. High-quality epitaxial -plane MnSn thin films have been grown on a sapphire substrate using a Ru seed layer. Using spin pumping induced inverse spin Hall effect measurements on -plane epitaxial MnSn/NiFe, we measure spin-diffusion length (), and spin Hall conductivity () of MnSn thin films: nm and cm. While is consistent with earlier studies, is an order of magnitude higher and of the opposite sign. The behavior is explained on the basis of excess Mn, which shifts the Fermi level in our films, leading to the observed behavior. Our findings demonstrate a technique for engineering of MnSn films by employing Mn composition for functional spintronic devices.
5 pages, 2 figures