Fabrication and Magnetization Reversal Processes for Co/Cu Multilayer Nanowires
- Authors
- Sharif, R.; Zhang, X. Q.; Rahman, M. K.; Shamaila, S.; Chen, J. Y.; Han, X. F.; Kim, Y. K.
- Issue Date
- 10월-2009
- Publisher
- IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
- Keywords
- Coercivity; magnetization reversal
- Citation
- IEEE TRANSACTIONS ON MAGNETICS, v.45, no.10, pp.4033 - 4036
- Indexed
- SCIE
SCOPUS
- Journal Title
- IEEE TRANSACTIONS ON MAGNETICS
- Volume
- 45
- Number
- 10
- Start Page
- 4033
- End Page
- 4036
- URI
- https://scholar.korea.ac.kr/handle/2021.sw.korea/119244
- DOI
- 10.1109/TMAG.2009.2026286
- ISSN
- 0018-9464
- Abstract
- Co/Cu multilayer nanowires fabricated in an array using anodized aluminium oxide (AAO) template has been investigated. Experimental conditions are optimized to fabricate Co/Cu multilayer systems with fixed Cu and variable Co layer thicknesses. Magnetization reversal mode is found to depend on the Co layer thickness. A transition occurs from coherent rotation to a combination of coherent and curling rotation at around t(Co) = 60 nm with increasing t(Co). The reversal modes have been investigated using the magnetic hysteresis loops measured at room temperature for Co/Cu nanowires placed at various angles between the directions of the nanowire axis and external fields using a vibrating sample magnetometer. The magnetic easy axis changes from the direction perpendicular to nanowires to that parallel to the nanowires at around t(Co) = 60 nm, indicating a change in the magnetization reversal mode. The reversal mode for the nanowires with thin disk-shaped Co layers is of a coherent rotation type, while that for long rod-shaped Co layers can be explained by a combination of coherent rotation and a curling mode.
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Collections - College of Engineering > Department of Materials Science and Engineering > 1. Journal Articles
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