Annealing inducedlowcoercivity,nanocrystallineCo–Fe–Si thin films exhibitinginversecosine angular variation

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Annealing inducedlowcoercivity,nanocrystallineCo–Fe–Si thin films exhibitinginversecosine angular variation

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dc.contributor.author Anantharaman, M R
dc.contributor.author Hysen, T
dc.contributor.author Salim, Al-Harthi
dc.contributor.author Al-Omari, I A
dc.contributor.author Geetha, P
dc.contributor.author Lisha, R
dc.contributor.author Ramanujan, R V
dc.contributor.author Sakthi Kumar, D
dc.date.accessioned 2014-08-01T09:25:24Z
dc.date.available 2014-08-01T09:25:24Z
dc.date.issued 2013-04-18
dc.identifier.uri http://dyuthi.cusat.ac.in/purl/4411
dc.description JournalofMagnetismandMagneticMaterials341(2013)165–172 en_US
dc.description.abstract Co–Fe–Si based films exhibit high magnetic moments and are highly sought after for applications like soft under layer sinper pendicular recording mediatomagneto-electro-mechanical sensor applications.In this workt he effect of annealing on s tructural,morphologicaland magnetic propertiesofco–Fe–Si thin films wasinvestigated.compositional analysis using x-rayphotoelectron spectroscopy and secondary ion massspectroscopyrevealedanativeoxidesurfacelayerconsistingofoxidesofco,feandsionthe surface. The morphology of theas deposited films shows mound like structures conformingtothe Volmer–Webergrowthmodel.Nanocrystallisationofamorphous films upon annealing was observed by glancing anglex-raydiffraction and transmission electron microscopy.Theevolutionofmagnetic properties with annealing is explained using the Herzermodel.Vibrating sample magnetometry measurements carried out at various angles from01 to 901 to the applied magnetic field were employed to study the angula rvariation of coercivity.The angular variation fits the modified Kondorsky model. Interestingly,the coercivity evolution with annealing deduced frommagneto-opticalKerreffectstudies indicates areversetrendcomparedtomagetisationobservedinthebulk.Thiscanbeattributedtoa domain wallpinningatnativeoxidelayeronthesurfaceofthin films. Theevolutionofsurfacemagnetic properties iscorrelatedwithmorphologyevolutionprobedusingatomicforcemicroscopy.The morphology aswellasthepresenceofthenativeoxidelayerdictatesthesurfacemagneticproperties and this is corroborated by the apparent difference in the bulk and surface magnetic properties en_US
dc.description.sponsorship Cochin University of Science and Technology en_US
dc.language.iso en en_US
dc.publisher Elsevier en_US
dc.subject Magnetic thin film en_US
dc.subject Kondorsky en_US
dc.subject Surface morphology en_US
dc.subject Coercivity en_US
dc.subject PSD en_US
dc.subject Surface magnetism en_US
dc.title Annealing inducedlowcoercivity,nanocrystallineCo–Fe–Si thin films exhibitinginversecosine angular variation en_US
dc.type Article en_US


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