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Sharp variation in coercivity and magnetic interactions in patterned CoxNi1-x nanoarrays
Journal article   Open access   Peer reviewed

Sharp variation in coercivity and magnetic interactions in patterned CoxNi1-x nanoarrays

Chao-Yao Yang, Liang-Wei Wang, Po-An Chen, Hong-Ji Lin, Chih-Huang Lai and Yuan-Chieh Tseng
Journal of Applied Physics, Vol.114(6), 063902
14/08/2013

Abstract

We present a study concerning the unexpectedly large coercivity increase and associated magneto-structural properties of Co x Ni 1-x patterned arrays. An increase in x led to an face-center-cubic (FCC)→hexagonal-close-packed (HCP) transition in Co x Ni 1-x arrays, accompanied by a 6-fold increase in coercivity and strong 3d exchange interactions probed by x-ray magnetic circular dichroism. Sum-rule analysis revealed that orbital moment involved very little in the variable coercivity and magnetic anisotropy; this is distinct from other nanostructures displaying variable coercivity. The sharp rise in coercivity can be attributed to the geometrical confinement of the arrays, causing the microstructure of the nano-clusters to switch magnetization reversal mechanism from fanning to coherent with increasing x, based on the chain-of-spheres model. First-order-reversal curves revealed that the FCC and HCP arrays comprised both soft and hard ferromagnetic components; however, the soft component of the FCC was much more pronounced, leading to differences in reversibility. This type of nanostructure provides a sharp control of magnetic hardness that could be tailored in related technologies. © 2013 AIP Publishing LLC.
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https://doi.org/10.1063/1.4817866View
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