In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metals can induce Dzyaloshinskii-Moriya (DM) interactions. Knowledge of the DM parameters is essential for understanding and designing exotic spin structures, such as hedgehog Skyrmions and chiral Néel walls, which are attractive for use in novel information storage technologies. We introduce a framework for computing the DM interaction in two-dimensional Rashba antiferromagnets. Unlike in Rashba ferromagnets, the DM interaction is not suppressed even at low temperatures. The material parameters control both the strength and the sign of the interfacial DM interaction. Our results suggest a route toward controlling the DM interaction in AFM materia...
In magnetic multilayer systems, a large spin-orbit coupling at the interface between heavy metals an...
In magnetic multilayer systems, a large spin-orbit coupling at the interface between heavy metals an...
In magnetic multilayer systems, a large spin-orbit coupling at the interface between heavy metals an...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
\u3cp\u3eIn antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent he...
Contains fulltext : 191840.pdf (preprint version ) (Open Access
In magnetic multilayer systems, a large spin-orbit coupling at the interface between heavy metals an...
In magnetic multilayer systems, a large spin-orbit coupling at the interface between heavy metals an...
In magnetic multilayer systems, a large spin-orbit coupling at the interface between heavy metals an...
In magnetic multilayer systems, a large spin-orbit coupling at the interface between heavy metals an...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
In antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent heavy metal...
\u3cp\u3eIn antiferromagnetic (AFM) thin films, broken inversion symmetry or coupling to adjacent he...
Contains fulltext : 191840.pdf (preprint version ) (Open Access
In magnetic multilayer systems, a large spin-orbit coupling at the interface between heavy metals an...
In magnetic multilayer systems, a large spin-orbit coupling at the interface between heavy metals an...
In magnetic multilayer systems, a large spin-orbit coupling at the interface between heavy metals an...
In magnetic multilayer systems, a large spin-orbit coupling at the interface between heavy metals an...