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      New multiferroics based on EuxSr1-xTiO3 nanotubes and nanowires

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          Abstract

          Using Landau-Ginzburg-Devonshire theory we study the complex interplay between structural antiferrodistortive order parameter (oxygen octahedron rotations), polarization and magnetization in EuxSr1-xTiO3 nanotubes and nanowires. We calculated EuxSr1-xTiO3 bulk and nanosystem phase diagrams, which include the antiferrodistortive, ferroelectric, ferromagnetic and antiferromagnetic phases. Our calculation shows the presence of "triple" antiferrodistortive-ferroelectric-ferromagnetic phases for EuxSr1-xTiO3 nanowires and nanotubes. presents interest for fundamental study and can be important for their potential applications. Since the triple phase exists at low temperatures (<10 K) with high polarization and magnetization values (~50 muC/cm2 and ~0.5 MA/m2). Therefore, the strong coupling between structural distortions, polarization and magnetization suggest the EuxSr1-xTiO3 nanosystems as strong candidates for possible miltiferroic applications.

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          Most cited references4

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          Coupling between magnetism and dielectric properties in quantum paraelectricEuTiO3

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            Magnetic-induced phonon anisotropy in ZnCr\(_2\)O\(_4\) from first principles

            We have studied the influence of magnetic order on the optical phonons of the geometrically frustrated spinel ZnCr\(_2\)O\(_4\) from first-principles. By mapping the first-principles phonon calculations onto a Heisenberg-like model, we developed a method to calculate exchange derivatives and subsequently the spin-phonon couping parameter from first-principles. All calculations were performed within LSDA+U.
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              Polar phonon mixing in magnetoelectric EuTiO3

                Author and article information

                Journal
                25 September 2012
                2012-10-12
                Article
                10.1063/1.4774208
                1209.5582
                d5cccf42-bb32-473e-a8db-c990ac3ed6a8

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

                History
                Custom metadata
                28 pages, 8 figures, 2 tables, Supplemental materials with 5 figures
                cond-mat.mtrl-sci

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