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Boltaev A.P., Pudonin F.A., Sherstnev I.A.
Magnetic anisotropy of multilayer periodical structures from magnetic nanoislands. Boltaev A.P., Pudonin F.A., Sherstnev I.A. P.N.Lebedev Physical Institute of the Russian Academy of Science, , Moscow, Russia
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Contents Introduction Some properties of multilayer island structures
One-directional anisotropy in island structures Rotation in of samples in magnetic field Vortex in magnetic nanostructures Conclusion
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Spin-tunneling structure
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Multilayer periodical island system
RF-sputtering systems: (FeNi - CoNi)10 (FeNi - C) 10 (FeNiCo - Co)10 Layer thickness 0,4-0,8 nm Island size 6-30 nm Distance between islands 1 – 6 nm Number of layers 1-20
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AFM and MFM images of the (FeNi-CoNi)N structure surface
Surface topography Magnetic topograpgy of the surface
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Magnetoresistance of (FeNi-CoNi)10
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Kerr effect for system (FeNi-CoNi)20 at different orientation of magnetic field
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Polar diagrams of sample magnetization
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Exchange anisotropy
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Experimental hysteresis loops
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The dependence of magnetization on rotation direction of sample in magnetic field.
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Vortexes in ferromagnetic nanoparticles
Vortex in ferromagnetic disk Possible magnetization in nanoislands system
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Results of modeling
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Vortex magnetic field in samples
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Results of vortex magnetic field action
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Result of vortex magnetic field action
Before action After action
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Conclusion Thanks you!
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Possible situation
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