National Repository of Grey Literature 2 records found  Search took 0.01 seconds. 
Magnetic properties of materials based on metastable Fe-Ni thin films
Křižáková, Viola ; Uhlíř, Vojtěch (referee) ; Flajšman, Lukáš (advisor)
Metastable Fe78Ni22 thin films grown on Cu(100) substrates are known for their capability of structural and magnetic phase transition upon ion beam irradiation. This thesis focuses on characterization of magnetic properties of FeNi layers with the emphasis on their anisotropic behaviour. An analytical model describing magnetic anisotropies, in planar structures and thin films, and its modification for Fe78Ni22/Cu(100) system is described in the theoretical part. In the experimental part, the anisotropy of ion-beam-transformed FeNi structures is thoroughly studied. The transformed films and patterns exhibit four-fold magnetic anisotropy originating from bcc iron crystal structure. Further, the possibility of modification of the magnetic anisotropy type by selecting a proper focused ion beam scanning strategy during the transformation is demonstrated. In the last part of the thesis, the maximum achievable lateral resolution of focused ion beam transformed structures is explored and a prototypical magnonic crystal is prepared.
Magnetic properties of materials based on metastable Fe-Ni thin films
Křižáková, Viola ; Uhlíř, Vojtěch (referee) ; Flajšman, Lukáš (advisor)
Metastable Fe78Ni22 thin films grown on Cu(100) substrates are known for their capability of structural and magnetic phase transition upon ion beam irradiation. This thesis focuses on characterization of magnetic properties of FeNi layers with the emphasis on their anisotropic behaviour. An analytical model describing magnetic anisotropies, in planar structures and thin films, and its modification for Fe78Ni22/Cu(100) system is described in the theoretical part. In the experimental part, the anisotropy of ion-beam-transformed FeNi structures is thoroughly studied. The transformed films and patterns exhibit four-fold magnetic anisotropy originating from bcc iron crystal structure. Further, the possibility of modification of the magnetic anisotropy type by selecting a proper focused ion beam scanning strategy during the transformation is demonstrated. In the last part of the thesis, the maximum achievable lateral resolution of focused ion beam transformed structures is explored and a prototypical magnonic crystal is prepared.

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