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AbstractAbstract
[en] Complex oxide epitaxial film growth is a rich and exciting field, owing to the wide variety of physical properties present in oxides. These properties include ferroelectricity, ferromagnetism, spin-polarization, and a variety of other correlated phenomena. Traditionally, high quality epitaxial oxide films have been grown via oxide molecular beam epitaxy or pulsed laser deposition. Here, we present the growth of high quality epitaxial films using an alternative approach, the pulsed electron-beam deposition technique. We demonstrate all three epitaxial growth modes in different oxide systems: Frank-van der Merwe (layer-by-layer); Stranski-Krastanov (layer-then-island); and Volmer-Weber (island). Analysis of film quality and morphology is presented and techniques to optimize the morphology of films are discussed.
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(c) 2013 American Institute of Physics; Country of input: International Atomic Energy Agency (IAEA)
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Journal Article
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ALKALINE EARTH METAL COMPOUNDS, ANGULAR MOMENTUM, BEAMS, CRYSTAL GROWTH METHODS, DEPOSITION, DIELECTRIC MATERIALS, ELECTROMAGNETIC RADIATION, EPITAXY, FILMS, IRRADIATION, LEPTON BEAMS, MAGNETIC MATERIALS, MAGNETISM, MATERIALS, ORIENTATION, PARTICLE BEAMS, PARTICLE PROPERTIES, RADIATIONS, RARE EARTH COMPOUNDS, SURFACE COATING, TRANSITION ELEMENT COMPOUNDS
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