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Magnetic properties and interlayer coupling in Co/V multilayers


 
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1. Title Title of document Magnetic properties and interlayer coupling in Co/V multilayers
 
2. Creator Author's name, affiliation, country Z. Yamkane; LPMMAT, Faculté des Sciences Ain Chock, Université Hassan II Casablanca, B.P. 5366 Mâarif; Morocco
 
2. Creator Author's name, affiliation, country H. Lassri; LPMMAT, Faculté des Sciences Ain Chock, Université Hassan II Casablanca, B.P. 5366 Mâarif; Morocco
 
2. Creator Author's name, affiliation, country M. Lassri; LPMMAT, Faculté des Sciences Ain Chock, Université Hassan II Casablanca, B.P. 5366 Mâarif; Morocco
 
2. Creator Author's name, affiliation, country N. Hassanain; LPM, Faculté des Sciences, Université Mohammed V, B.P. 1014, Rabat; Morocco
 
2. Creator Author's name, affiliation, country M. Omri; LPMMAT, Faculté des Sciences Ain Chock, Université Hassan II Casablanca, B.P. 5366 Mâarif; Morocco
 
2. Creator Author's name, affiliation, country S. Derkaoui; LPMMAT, Faculté des Sciences Ain Chock, Université Hassan II Casablanca, B.P. 5366 Mâarif; Morocco
 
3. Subject Discipline(s)
 
3. Subject Keyword(s) Co/V multilayers; Spin wave excitations; Interlayer coupling
 
4. Description Abstract The magnetic properties of evaporated Co/V multilayer films have been studied by superconducting quantum interference device magnetometer and ferromagnetic-resonance (FMR). FMR has been used to study the interlayer exchange coupling and the FMR linewidth in Co/V multilayers at room temperature. Spin-waves resonance modes were observed in some Co/V multilayers and the relation of resonant field Hres with the mode number n obeys the so-called n2 law. The interlayer coupling constant was determined. The FMR linewidth, in parallel geometry, of the uniform mode was found to increase with decreasing Co thickness (10Å £ tCo £ 45Å) indicating that it corresponds to an interfacial effect.
 
5. Publisher Organizing agency, location
 
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7. Date (YYYY-MM-DD) 12-01-2012
 
8. Type Status & genre Peer-reviewed Article
 
8. Type Type
 
9. Format File format PDF
 
10. Identifier Uniform Resource Identifier https://revues.imist.ma/index.php/MJCM/article/view/469
 
11. Source Title; vol., no. (year) Moroccan Journal of Condensed Matter; Vol 13, No 2 (2011)
 
12. Language English=en en
 
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15. Rights Copyright and permissions Copyright (c)