Multifunctional Heusler alloy: experimental evidences of enhanced magnetocaloric properties at room temperature and half-metallicity
arXiv:1508.01828
Abstract
Heusler alloys are widely studied due to their interesting structural and magnetic properties, like magnetic memory shape ability, coupled magneto-structural phase transitions and half-metallicity; ruled, for many cases, by the valence electrons number (). The present work focuses on the magnetocaloric potentials of half-metals, exploring the effect of on the magnetic entropy change, preserving half-metallicity. The test bench is the Si-rich side of the half-metallic series FeMnSiGa. From the obtained experimental results it was possible to obtain , i.e., the maximum magnetic entropy change depends in a linear fashion on , weighted by a power law on the magnetic field change ( and are constants experimentally determined). In addition, it was also possible to predict a new multifunctional Heusler alloy, with enhanced magnetocaloric effect, Curie temperature close to 300 K and half-metallicity.
submitted to PLA