arXiv · 1911.08404
Magneto-structural correlations in a systematically disordered B2 lattice
Abstract
Ferromagnetism in certain B2 ordered alloys such as Fe$_{60}$Al$_{40}$ can be switched on, and tuned, via antisite disordering of the atomic arrangement. The disordering is accompanied by a $\sim$1 % increase in the lattice parameter. Here we performed a systematic disordering of B2 Fe$_{60}$Al$_{40}$ thin films, and obtained correlations between the order parameter ($S$), lattice parameter ($a_0$), and the induced saturation magnetization ($M_{s}$). As the lattice is gradually disordered, a critical point occurs at 1-$S$=0.6 and $a_0$=291 pm, where a sharp increase of the $M_{s}$ is observed. DFT calculations suggest that below the critical point the system magnetically behaves as it would still be fully ordered, whereas above, it is largely the increase of $a_0$ in the disordered state that determines the $M_{s}$. The insights obtained here can be useful for achieving tailored magnetic properties in alloys through disordering.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Jonathan Ehrler, Biplab Sanyal, Jörg Grenzer, Shengqiang Zhou, Roman Böttger, Benedikt Eggert, Heiko Wende, Jürgen Lindner, Jürgen Fassbender, Christoph Leyens, Kay Potzger, Rantej Bali. 2019-11-19. Magneto-structural correlations in a systematically disordered B2 lattice. https://doi.org/10.1088/1367-2630%2Fab944a
Cite the original work for its findings. Save a collection to share your selection of sources.