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Magnetic transition phase diagram of cobalt clusters electrodeposited on HOPG: Experimental and micromagnetic modelling study
Authors:M. Rivera  C.H. Rios-Reyes  L.H. Mendoza-Huizar
Affiliation:a Imperial College London, Department of Chemistry, South Kensington Campus, London SW7 2AZ, UK
b Universidad Autónoma Metropolitana-Azcapotzalco, Departamento de Materiales, Av. San Pablo 180, Col. Reynosa Tamaulipas, C.P. 02200, México D.F., Mexico
c Universidad Autónoma del Estado de Hidalgo, Centro de Investigaciones Químicas, Mineral de la Reforma, Hidalgo, C.P. 42181, Mexico
Abstract:The magnetic transition from mono- to multidomain magnetic states of cobalt clusters electrodeposited on highly oriented pyrolytic graphite electrodes was studied experimentally using Magnetic Force Microscopy. From these images, it was found that the critical size of the magnetic transition is dominated by the height rather than the diameter of the aggregate. This experimental behavior was found to be consistent with a theoretical single-domain ferromagnetic model that states that a critical height limits the monodomain state. By analyzing the clusters magnetic states as a function of their dimensions, magnetic exchange constant and anisotropy value were obtained and used to calculate other magnetic properties such as the exchange length, magnetic wall thickness, etc. Finally, a micromagnetic simulation study correctly predicted the experimental magnetic transition phase diagram.
Keywords:Cobalt   Electrodeposition   AFM/MFM   Magnetic domain   Micromagnetic modelling
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