机构:INST PASCAL CHEM & MAT STRASBOURG,F-67070 STRASBOURG,FRANCE
DEGRONCKEL, HAM
KOPINGA, K
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机构:INST PASCAL CHEM & MAT STRASBOURG,F-67070 STRASBOURG,FRANCE
KOPINGA, K
DEJONGE, WJM
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机构:INST PASCAL CHEM & MAT STRASBOURG,F-67070 STRASBOURG,FRANCE
DEJONGE, WJM
PANISSOD, P
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机构:INST PASCAL CHEM & MAT STRASBOURG,F-67070 STRASBOURG,FRANCE
PANISSOD, P
SCHILLE, JP
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机构:INST PASCAL CHEM & MAT STRASBOURG,F-67070 STRASBOURG,FRANCE
SCHILLE, JP
DENBROEDER, FJA
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机构:INST PASCAL CHEM & MAT STRASBOURG,F-67070 STRASBOURG,FRANCE
DENBROEDER, FJA
机构:
[1] INST PASCAL CHEM & MAT STRASBOURG,F-67070 STRASBOURG,FRANCE
[2] PHILIPS RES LABS,5600 JA EINDHOVEN,NETHERLANDS
来源:
PHYSICAL REVIEW B
|
1991年
/
44卷
/
16期
关键词:
D O I:
10.1103/PhysRevB.44.9100
中图分类号:
T [工业技术];
学科分类号:
08 ;
摘要:
The nanostructure and local strain of [111] fcc Co/Cu multilayers are studied by means of nuclear magnetic resonance. The atomic topology of the interface can be deduced from the NMR spectrum and the local strains from the shift in the hyperfine fields. The results show that the Co/Cu interface is a mixed monolayer and that the Co layers, including the interface, have uniform strain inversely proportional to the Co thickness (within experimental error) with the proportionality constant depending on the Cu thickness.