- Letter
Symmetry-driven large tunneling magnetoresistance in magnetic tunnel junctions with perpendicular magnetic anisotropy
Phys. Rev. Materials 8, L091401 – Published 10 September, 2024
DOI: https://doi.org/10.1103/PhysRevMaterials.8.L091401
Abstract
Magnetic tunnel junctions (MTJs) that are comprised of epitaxially grown complex oxides offer a versatile platform to control the symmetry of tunneling states and tailor magnetic anisotropy useful for practical applications. This work employs thin films of as an insulating barrier deposited between two ferromagnetic electrodes to form fully epitaxial MTJs and demonstrate these functionalities. Transport measurements demonstrate large tunneling magnetoresistance (TMR), significantly exceeding previously found values of TMR in MTJs based on electrodes. These results are explained by perpendicular magnetic anisotropy of and matching (mismatching) between symmetry and spin across the (001) interface for the parallel (antiparallel) MTJ magnetization state, supported by density functional (DFT) calculations. The angular variation of TMR indicates that the electrodes contain multiple magnetic domains, allowing the devices to exhibit at least three stable resistance states.