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Oblique angle deposited FeCo multilayered nanocolumnar structure : Magnetic anisotropy and its thermal stability in polycrystalline thin films

Authors :
Gupta, Pooja
Srihari, Velaga
Pandit, Pallavi
Betker, Marie
Schwartzkopf, Matthias
Kumar, Dileep
Dev, Arun Singh
Bera, Anup Kumar
Roth, Stephan V.
Gupta, Pooja
Srihari, Velaga
Pandit, Pallavi
Betker, Marie
Schwartzkopf, Matthias
Kumar, Dileep
Dev, Arun Singh
Bera, Anup Kumar
Roth, Stephan V.
Publication Year :
2022

Abstract

Iron-Cobalt (FeCo) columnar, multilayered structure is prepared by depositing several thin FeCo layers by varying the angle between the surface normal and the evaporation direction as 0 (normal) and 60(oblique), alternatively. In situ X-ray scattering and magneto-optical Kerr effect (MOKE) measurements established the evolution of magnetic properties with that of the morphology and structure of the multilayer. The strong shape anisotropy and compressive stress of nanocolumns in alternative FeCo layers resulted in a well-defined uniaxial magnetic anisotropy (UMA) with the easy axis of magnetization along the projection of the tilted nanocolumns in the film plane. The stress in the film provides minimization of magnetoelastic energy along the in-plane column direction, which couples with the columnar shape anisotropy energies and results in the preferential orientation of the magnetic easy axis along the oblique angle deposition direction in the film plane. Drastic reduction in the in-plane UMA after annealing at 450 C is attributed to the merging of columns and removal of stresses after heat treatment. The present study opens a new pathway to produce magnetically anisotropic multilayer structures using single material and thus may have prominent implications for future technological devices.<br />QC 20220525

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1372233340
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1016.j.apsusc.2022.153056