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Giant magnetic anisotropy changes in Sr<sub>2</sub>CrReO<sub>6</sub> thin films on BaTiO<sub>3</sub>

Giant magnetic anisotropy changes in Sr2CrReO6 thin films on BaTiO3

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CZESCHKA, Franz D., Stephan GEPRÄGS, Matthias OPEL, Sebastian T. B. GÖNNENWEIN, Rudolf GROSS, 2009. Giant magnetic anisotropy changes in Sr2CrReO6 thin films on BaTiO3. In: Applied Physics Letters. American Institute of Physics (AIP). 95(6), 062508. ISSN 0003-6951. eISSN 1077-3118. Available under: doi: 10.1063/1.3200236

@article{Czeschka2009-06-12T08:13:42ZGiant-52898, title={Giant magnetic anisotropy changes in Sr2CrReO6 thin films on BaTiO3}, year={2009}, doi={10.1063/1.3200236}, number={6}, volume={95}, issn={0003-6951}, journal={Applied Physics Letters}, author={Czeschka, Franz D. and Geprägs, Stephan and Opel, Matthias and Gönnenwein, Sebastian T. B. and Gross, Rudolf}, note={Article Number: 062508} }

2009-06-12T08:13:42Z Giant magnetic anisotropy changes in Sr<sub>2</sub>CrReO<sub>6</sub> thin films on BaTiO<sub>3</sub> Geprägs, Stephan 2021-02-18T10:22:59Z Gönnenwein, Sebastian T. B. Gross, Rudolf eng The integration of ferromagnetic and ferroelectric materials into hybrid heterostructures yields multifunctional systems with improved or novel functionality. We here report on the structural, electronic and magnetic properties of the ferromagnetic double perovskite Sr<sub>2</sub>CrReO<sub>6</sub>, grown as epitaxial thin film onto ferroelectric BaTiO<sub>3</sub>. As a function of temperature, the crystal-structure of BaTiO<sub>3</sub> undergoes phase transitions, which induce qualitative changes in the magnetic anisotropy of the ferromagnet. We observe abrupt changes in the coercive field of up to 1.2T along with resistance changes of up to 6.5%. These results are attributed to the high sensitivity of the double perovskites to mechanical deformation. Gross, Rudolf 2021-02-18T10:22:59Z Czeschka, Franz D. terms-of-use Opel, Matthias Gönnenwein, Sebastian T. B. Geprägs, Stephan Czeschka, Franz D. Opel, Matthias

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