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Ferroelectric BaTiO3/SrTiO3 multilayered thin films for room-temperature tunable microwave elements
Authors:Ming Liu  Chunrui Ma  Gregory Collins  Jian Liu  Chonglin Chen  Andy D Alemayehu  Guru Subramanyam  Ying Ding  Jianghua Chen  Chao Dai  Yuan Lin  Melanie W Cole
Abstract:Ferroelectric BaTiO3/SrTiO3 with optimized c-axis-oriented multilayered thin films were epitaxially fabricated on (001) MgO substrates. The microstructural studies indicate that the in-plane interface relationships between the films as well as the substrate are determined to be (001)SrTiO3//(001)BaTiO3//(001)MgO and [100]SrTiO3//[100]BaTiO3//[100]MgO. The microwave (5 to 18 GHz) dielectric measurements reveal that the multilayered thin films have excellent dielectric properties with large dielectric constant, low dielectric loss, and high dielectric tunability, which suggests that the as-grown ferroelectric multilayered thin films can be developed for room-temperature tunable microwave elements and related device applications.
Keywords:BaTiO3//SrTiO3   Multilayer   Ferroelectric thin films   Epitaxial behavior   Microwave dielectric properties
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