Comparative study of giant magnetoresistance in CoZr/Cu and Co/Cu multilayers
Since amorphous Co 100− x Zr x alloys present ultrasoft properties, higher sensitivity is expected in CoZr/Cu multilayers compared to the Co/Cu system as investigated in the present work from two types (I and II) of hybrid magnetic structures [(F 1/F 2/F 1)Cu] 15 where (F 1/F 2/F 1) is a magnetic sa...
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Published in | Journal of magnetism and magnetic materials Vol. 165; no. 1; pp. 284 - 287 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Elsevier B.V
1997
|
Subjects | |
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Abstract | Since amorphous Co
100−
x
Zr
x
alloys present ultrasoft properties, higher sensitivity is expected in CoZr/Cu multilayers compared to the Co/Cu system as investigated in the present work from two types (I and II) of hybrid magnetic structures [(F
1/F
2/F
1)Cu]
15 where (F
1/F
2/F
1) is a magnetic sandwich corresponding to either [(CoZr/Co/CoZr)]
15 (type I) or [(Co/CoZr/Co)Cu]
15 (type II) and F
1 is a very thin magnetic layer inserted at the interfaces between the Cu layer and the magnetic F
2-based multilayers. Strong changes in the magnetization hysteresis curve, the indirect exchange coupling
J and the magnetoresistive properties are observed with the insertion of a very thin magnetic CoZr (Co) layer at the interfaces between Cu spacer layers and the magnetic Co (CoZr) layer in Co/Cu (CoZr/Cu) multilayers. Insertion of a 2 Å thick CoZr layer into interfaces of the Co/Cu type I multilayers induces significant reduction by a factor 5 of
J and the magnetoresistance Δ
R/R. Opposite evolution is observed when a thin Co layer is inserted in CoZr/Cu type II multilayers. The dependences of the magnetic and magnetoresistive characteristics with the insertion are correlated with the interface roughness change as deduced from XRD at low angles. |
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AbstractList | Since amorphous Co
100−
x
Zr
x
alloys present ultrasoft properties, higher sensitivity is expected in CoZr/Cu multilayers compared to the Co/Cu system as investigated in the present work from two types (I and II) of hybrid magnetic structures [(F
1/F
2/F
1)Cu]
15 where (F
1/F
2/F
1) is a magnetic sandwich corresponding to either [(CoZr/Co/CoZr)]
15 (type I) or [(Co/CoZr/Co)Cu]
15 (type II) and F
1 is a very thin magnetic layer inserted at the interfaces between the Cu layer and the magnetic F
2-based multilayers. Strong changes in the magnetization hysteresis curve, the indirect exchange coupling
J and the magnetoresistive properties are observed with the insertion of a very thin magnetic CoZr (Co) layer at the interfaces between Cu spacer layers and the magnetic Co (CoZr) layer in Co/Cu (CoZr/Cu) multilayers. Insertion of a 2 Å thick CoZr layer into interfaces of the Co/Cu type I multilayers induces significant reduction by a factor 5 of
J and the magnetoresistance Δ
R/R. Opposite evolution is observed when a thin Co layer is inserted in CoZr/Cu type II multilayers. The dependences of the magnetic and magnetoresistive characteristics with the insertion are correlated with the interface roughness change as deduced from XRD at low angles. |
Author | Ben Youssef, J. Koshkina, O. Le Gall, H. Desvignes, J.M. Fert, A. El Harfaoui, M. El Yamani, M. Bouziane, K. |
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Cites_doi | 10.1143/JJAP.34.L112 10.1063/1.358251 10.1109/20.179590 10.1557/PROC-221-15 |
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Copyright | 1997 Elsevier Science B.V. All rights reserved |
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Keywords | interlayer Multilayers Giant magnetoresistance Exchange coupling Ultrasoft magnetic properties Interface roughness |
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References | Hosoe, Hoshino, Tsunashima, Uchiyama, Imuna (bib5) 1992; 28 Rakii, Le Gall, Gieraltowski, Loaëc, Fessant, Puchalska (bib3) 1990; 86 Jimbo (bib2) 1995; 34 Gangopadadhyay (bib1) 1994; 76 S.S.P. Parkin, R.F. Marks and R.F.C. Farrow, ICMFS, Glasgow, August 1991, paper 04-2. Jimbo (10.1016/S0304-8853(96)00530-6_bib2) 1995; 34 Hosoe (10.1016/S0304-8853(96)00530-6_bib5) 1992; 28 Gangopadadhyay (10.1016/S0304-8853(96)00530-6_bib1) 1994; 76 10.1016/S0304-8853(96)00530-6_bib4 Rakii (10.1016/S0304-8853(96)00530-6_bib3) 1990; 86 |
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Snippet | Since amorphous Co
100−
x
Zr
x
alloys present ultrasoft properties, higher sensitivity is expected in CoZr/Cu multilayers compared to the Co/Cu system as... |
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SubjectTerms | Exchange coupling Giant magnetoresistance Interface roughness interlayer Multilayers Ultrasoft magnetic properties |
Title | Comparative study of giant magnetoresistance in CoZr/Cu and Co/Cu multilayers |
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