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Half-metallic {Co2MnSi/Co2FeSi} multilayered Heusler electrodes in magnetic tunnel junctions

Castrup, A. ; Dasgupta, S. ; Scherer, T. ; Rösner, H. ; Ellrich, J. ; Kruk, R. ; Ghafari, M. ; Hahn, H. ; Hütten, A. ; Ebke, D. ; Liu, N.-N. ; Ennen, I. ; Thomas, A. ; Schmalhorst, J. ; Reiss, G. (2007)
Half-metallic {Co2MnSi/Co2FeSi} multilayered Heusler electrodes in magnetic tunnel junctions.
In: Journal of Magnetism and Magnetic Materials, 310 (2)
doi: 10.1016/j.jmmm.2006.10.920
Article, Bibliographie

Abstract

It is demonstrated that the atomic ordering of Co2FeSi can significantly be improved in terms of magnetization and tunnel magnetoresistance using multilayered {Co2MnSi5 nm/Co2FeSi5 nm}10 full-Heusler magnetic electrodes in magnetic tunnel junctions.

Item Type: Article
Erschienen: 2007
Creators: Castrup, A. ; Dasgupta, S. ; Scherer, T. ; Rösner, H. ; Ellrich, J. ; Kruk, R. ; Ghafari, M. ; Hahn, H. ; Hütten, A. ; Ebke, D. ; Liu, N.-N. ; Ennen, I. ; Thomas, A. ; Schmalhorst, J. ; Reiss, G.
Type of entry: Bibliographie
Title: Half-metallic {Co2MnSi/Co2FeSi} multilayered Heusler electrodes in magnetic tunnel junctions
Language: English
Date: March 2007
Publisher: Elsevier Science Publishing Company
Journal or Publication Title: Journal of Magnetism and Magnetic Materials
Volume of the journal: 310
Issue Number: 2
DOI: 10.1016/j.jmmm.2006.10.920
Abstract:

It is demonstrated that the atomic ordering of Co2FeSi can significantly be improved in terms of magnetization and tunnel magnetoresistance using multilayered {Co2MnSi5 nm/Co2FeSi5 nm}10 full-Heusler magnetic electrodes in magnetic tunnel junctions.

Uncontrolled Keywords: Full-Heusler alloy, Magnetic tunnel junction, Energy-filtered TEM, Magnetic multilayer
Additional Information:

Proceedings of the 17th International Conference on Magnetism

The International Conference on Magnetism

Divisions: 11 Department of Materials and Earth Sciences > Material Science > Joint Research Laboratory Nanomaterials
11 Department of Materials and Earth Sciences > Material Science
11 Department of Materials and Earth Sciences
Date Deposited: 13 Feb 2013 12:20
Last Modified: 05 Mar 2013 10:05
PPN:
Funders: This work was supported by the Deutsche Forschungsgemeinschaft.
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