Showing 1 - 4 results of 4 for search '"The Domain (film)"', query time: 0.41s Refine Results
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    Strain engineering a multiferroic monodomain in thin-film BiFeO3 by Waterfield Price, N, Vibhakar, A, Johnson, R, Schad, J, Saenrang, W, Bombardi, A, Chmiel, F, Eom, C, Radaelli, P

    Published 2019
    “…By growing (111)-oriented BiFeO<sub>3</sub> films on an orthorhombic TbScO<sub>3</sub> substrate, we are able to overcome this, and, by exploiting the magnetoelastic coupling between the magnetic and crystal structures, bias the growth of a given magnetic-, ferroelectric-, and structural-domain film. We further demonstrate the coupling of the magnetic structure to the ferroelectric polarisation by showing the magnetic polarity in this domain is inverted upon 180° ferroelectric switching.…”
    Journal article
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    Strain-driven phase transitions and associated dielectric/piezoelectric anomalies in BiFeO3 thin films by Huang, Chuanwei, Chu, Y. H., Chen, Zuhang, Wang, Junling, Sritharan, Thirumany, He, Q., Ramesh, R., Chen, Lang

    Published 2011
    “…Strain-driven phase transitions and related intrinsic polarization, dielectric, and piezoelectric properties for single-domain films were studied for BiFeO3 using phenomenological Landau–Devonshire theory. …”
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    Journal Article
  4. 4

    Crystallization of Poly(ethylene)s with Regular Phosphoester Defects Studied at the Air–Water Interface by Nazmul Hasan, Karsten Busse, Tobias Haider, Frederik R. Wurm, Jörg Kressler

    Published 2020-10-01
    “…The thickness of the domains/films is found in the range from <i>~</i> (2.4 to 3.2) nm depending on the transfer pressure. …”
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    Article