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      Lorentz microscopy mapping for domain walls structure study in L1\(_0\) FePd thin films

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          Abstract

          Thin film alloys with perpendicular anisotropy were studied using Lorentz Transmission Electron Microscopy (LTEM). This work focuses on the configuration of domain walls and demonstrates the suitability and accuracy of LTEM for the magnetic characterisation of perpendicular magnetic anisotropy materials. Thin films of chemically ordered (\(\unit{L1_0}\)) FePd alloys were investigated by micro-magnetic modelling and LTEM phase retrieval approach. The different components of magnetization described by the modeling were studied on experimental images and confirmed by LTEM contrast simulation. Furthermore, quantitative measurements of magnetic induction inside the domain walls were made by using an original method to separate the electrical and magnetical contributions to the phase information. Irregularities were also observed along the domain walls which could play a major role during the magnetization processes.

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          The investigation of magnetic domain structures in thin foils by electron microscopy

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            The direct determination of magnetic domain wall profiles by differential phase contrast electron microscopy

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              Magnetic susceptibility and magnetic domain configuration as a function of the layer thickness in epitaxial FePd(0 0 1) thin films ordered in the L1o structure

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                Author and article information

                Journal
                31 August 2009
                Article
                0908.4463
                b5053d5e-5ff5-4092-883b-03197269dcf5

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                Ultramicroscopy (2009) In press
                physics.ins-det
                ccsd hal-00411103

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