DocumentCode :
83109
Title :
Magnetostatic Interaction Investigation of CoFe Alloy Nanowires by First-Order Reversal-Curve Diagrams
Author :
Almasi Kashi, M. ; Ramazani, Azam ; Esmaeily, A.S.
Author_Institution :
Dept. of Phys., Univ. of Kashan, Kashan, Iran
Volume :
49
Issue :
3
fYear :
2013
fDate :
Mar-13
Firstpage :
1167
Lastpage :
1171
Abstract :
Magnetic CoFe alloy nanowires were alternating current (ac)-pulse electrodeposited into the nanopores of hard anodized aluminum oxide templates. The effect of nanowires lengths on the magnetostatic interactions was investigated using first-order reversal-curve (FORC) method. FORC diagrams obtained from nanowire arrays with different lengths show drastic improvement in magnetic properties with decreasing the nanowires length. The coercivity reaches 995 Oe from initially 790 Oe. Also, the squareness enhances from 0.62 to 0.92, showing the decrease in magnetostatic interactions between the nanowires. FORC diagrams prove the decrease in magnetostatic interactions in nanowires with shorter lengths. With decreasing the nanowires length, the spread of distribution in the Hu-direction decreases. It varies from 1600 to 900 Oe when length decreases from 27 to 8 μm. FORC diagrams also reveal formation of nanowire arrays with dominant interacting single domain (SD).
Keywords :
cobalt alloys; coercive force; electrodeposition; iron alloys; magnetic hysteresis; magnetostatics; nanofabrication; nanomagnetics; nanowires; Al2O3; CoFe; alternating current-pulse electrodeposition; coercivity; distribution spread; first-order reversal-curve diagrams; first-order reversal-curve method; hard anodized aluminum oxide template nanopores; interacting single domain; magnetic CoFe alloy nanowires; magnetic properties; magnetostatic interaction; nanowire array formation; nanowires length effect; size 8 mum to 27 mum; Coercive force; Magnetic domains; Magnetic multilayers; Magnetic recording; Magnetostatics; Nanowires; Saturation magnetization; First-order reversal curves (FORCs); magnetic nanowires; magnetostatic interaction;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2012.2230335
Filename :
6373732
Link To Document :
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