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      Artificial pinning center technology to enhance vortex pinning in YBCO coated conductors

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      Superconductor Science and Technology
      IOP Publishing

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          Multiferroic BaTiO3-CoFe2O4 Nanostructures.

          We report on the coupling between ferroelectric and magnetic order parameters in a nanostructured BaTiO3-CoFe2O4 ferroelectromagnet. This facilitates the interconversion of energies stored in electric and magnetic fields and plays an important role in many devices, including transducers, field sensors, etc. Such nanostructures were deposited on single-crystal SrTiO3 (001) substrates by pulsed laser deposition from a single Ba-Ti-Co-Fe-oxide target. The films are epitaxial in-plane as well as out-of-plane with self-assembled hexagonal arrays of CoFe2O4 nanopillars embedded in a BaTiO3 matrix. The CoFe2O4 nanopillars have uniform size and average spacing of 20 to 30 nanometers. Temperature-dependent magnetic measurements illustrate the coupling between the two order parameters, which is manifested as a change in magnetization at the ferroelectric Curie temperature. Thermodynamic analyses show that the magnetoelectric coupling in such a nanostructure can be understood on the basis of the strong elastic interactions between the two phases.
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            Boson localization and correlated pinning of superconducting vortex arrays

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              Vortex confinement by columnar defects in YBa2Cu3O7 crystals: Enhanced pinning at high fields and temperatures.

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                Author and article information

                Journal
                Superconductor Science and Technology
                Supercond. Sci. Technol.
                IOP Publishing
                0953-2048
                1361-6668
                January 01 2010
                January 01 2010
                : 23
                : 1
                : 014001
                Article
                10.1088/0953-2048/23/1/014001
                28d5120d-b9ad-44ba-9a49-c40b20f4f536
                © 2010
                History

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