DocumentCode :
766206
Title :
Effect of Axial Ratio and Atomic Volume on Magnetism of \\alpha ^\\prime and \\gamma ^\\prime -Fe–N
Author :
Sunaga, Kazuyuki ; Tsunoda, Masakiyo ; Takahashi, Migaku
Author_Institution :
Dept. of Electron. Eng., Tohoku Univ.
Volume :
42
Issue :
10
fYear :
2006
Firstpage :
3020
Lastpage :
3022
Abstract :
alpha´ (bct) and gamma´(fct)-Fe-N with various N contents and unit-cell volumes were synthesized by using a multilayer fabrication technique. The effect of axial ratio and atomic volume on magnetism of these phases was examined. The atomic volume of alpha´ and gamma´ phases monotonously increases with increasing either N content of Fe-N layers or in-plane lattice spacing of intermediate layers. In both cases of alpha´ and gamma´-Fe-N, the magnetic moment increases with increasing atomic volume. This result qualitatively corresponds to theoretical prediction. In the case of alpha´-Fe-N, the magnetic moment increases with an increasing axial ratio. On the other hand, in the case of gamma´-Fe-N, the magnetic moment decreases with an increasing axial ratio. In the case of alpha´-Fe-N, the exchange integral (J) does not change against both atomic volume and axial ratio. On the other hand, in the case of gamma´-Fe-N, J increases with increasing atomic volume and slightly decreases with increasing axial ratio. Judging from these results, we can expect to further enhance the magnetic moment with relatively high Tc, when we could realize the intermediate state of alpha´ and gamma´-Fe-N
Keywords :
Curie temperature; ferrimagnetic materials; magnetic moments; magnetic multilayers; Curie temperature; Fe-N; atomic volume; axial ratio effect; in-plane lattice spacing; intermediate layers; magnetic moment; magnetism; multilayer fabrication; Atomic layer deposition; Bones; Fabrication; Industrial electronics; Iron; Lattices; Magnetic moments; Magnetic multilayers; Saturation magnetization; Temperature; Curie temperature; Fe–N; magnetic moment; multilayer fabrication technique;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2006.878427
Filename :
1704516
Link To Document :
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