Perovskite Thin Films

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Details

The unique combination of (a) highly brilliant x-rays produced in a modern third generation synchrotron source, (b) the availability of a fast, single-photon counting area pixel detector and (c) a pulsed laser deposition equipment for in-situ growth enables one to study both the structure and kinetics of the thin film growth of perovskites. The surface structure of titanium-dioxide-terminated strontium titanate (STO) was analyzed by surface x-ray diffraction (SXRD) for two different environments: One (cold) at room temperature and in ultra-high vacuum, and the other (hot) at elevated temperatures and in an oxygen background, i.e., under conditions typical for perovskite thin film growth. SXRD was used to determine the atomic structures of lanthanum strontium manganate thin films, grown monolayer-by-monolayer on STO by pulsed laser deposition. Structures were solved using the COBRA phase-retrieval method and subsequent structural refinement. These results allowed concluding on the onset of colossal magnetoresistance. In-situ kinetic studies of the thin film growth led to the proposition of a novel energetic smoothing mechanism for the growth of complex metal-oxide thin films.

Autorentext

Dr. Roger Herger (*1977) studied Chemistry (MSc) and Physics(PhD) at the University of Zurich and at the Swiss Light Source,Paul Scherrer Institut, Villigen, Switzerland. He is author of 16scientific publications, including high-profile articles. He washonored by the Alfred Werner Legat award of the University twicefor exceptional performance.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783838104461
    • Sprache Deutsch
    • Genre Weitere Physik- & Astronomie-Bücher
    • Anzahl Seiten 132
    • Größe H220mm x B150mm x T9mm
    • Jahr 2015
    • EAN 9783838104461
    • Format Kartonierter Einband
    • ISBN 978-3-8381-0446-1
    • Veröffentlichung 25.07.2015
    • Titel Perovskite Thin Films
    • Autor Roger Herger
    • Untertitel Surface Structure, Interface Structure, and Film Growth
    • Gewicht 215g
    • Herausgeber Südwestdeutscher Verlag für Hochschulschriften AG Co. KG

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