Strain-induced perpendicular magnetic anisotropy in LaCoMnO thin films and its dependence with film thickness
arXiv:1510.08685 · doi:10.1103/PhysRevB.93.144417
Abstract
Ferromagnetic insulating LaCoMnO (LCMO) epitaxial thin films grown on top of SrTiO (001) substrates presents a strong magnetic anisotropy favoring the out of plane orientation of the magnetization with a strong anisotropy field ( kOe for film thickness of about 15 nm) and with a coercive field of about 10 kOe. The anisotropy can be tuned by modifying the oxygen content of the film which indirectly has two effects on the unit cell: i) change of the orientation of the LCMO crystallographic axis over the substrate (from c in-plane to c out-of-plane) and ii) shrinkage of the out of plane cell parameter, which implies increasing tensile strain of the films. In contrast, LCMO films grown on (LaAlO)(SrAlTaO) and LaAlO substrates (with a larger out-of-plane lattice parameter and compressive stress) display in-plane magnetic anisotropy. Thus, we link the strong magnetic anisotropy observed in LaCoMnO to the relation between in-plane and out-of-plane parameters and so to the film stress.
16 pages, 1 table 9 figures Accepted for publication in Phys. Rev. B