The magnetocaloric effect of exchange anisotropy
Abstract
The magnetocaloric effect is a temperature change in magnetic materials when subjected to applied magnetic field variations. An inverse magnetocaloric effect occurs when applying a magnetic field adiabatically leads to sample cooling instead of heating. In the present study, we report on the inverse magnetocaloric effect in unidirectional ferromagnetic nanoparticles, demonstrating that this phenomenon can be controlled through interfacial exchange coupling at the nanoscale and within a moderate external field. The present results show that crystalline Ni80Fe20 nanoparticles diluted in an amorphous Al2O3 matrix exhibit the rich phenomena of coercive enhancement, hysteresis shifts, and training effects associated with the exchange anisotropy. The entropy changes are determined by this anisotropy.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (7)
David T. Dekadjevi
Jamal Ben Youssef
LabSTICC, CNRS, University Brest 3 , Brest,
Souren P. Pogossian
University Brest, CNRS, IRD, Ifremer, IUEM, Laboratoire d'Océanographie Physique et Spatiale (LOPS), Technopole Brest-Iroise 4 , Rue Dumont d'Urville, 29280 Plouzané,
David Spenato
Alexandra Suvorova
Centre for Microscopy and Microanalysis, The University of Western Australia 5 , Crawley, Western Australia 6009,
André M. Strydom
Aletta R. E. Prinsloo