Polar domains in lead titanate films under tensile strain

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Abstract

Thin films of PbTiO3, a classical ferroelectric, have been grown under tensile strain on single-crystal substrates of DyScO3. The films, of only 5nm thickness, grow fully coherent with the substrate, as evidenced by synchrotron x-ray diffraction. A mapping of the reciprocal space reveals intensity modulations (satellites) due to regularly spaced polar domains in which the polarization appears rotated away from the substrate normal, characterizing a low-symmetry phase not observed in the bulk material. This could have important practical implications since these phases are known to be responsible for ultrahigh piezoelectric responses in complex systems. © 2006 The American Physical Society.

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Catalan, G., Janssens, A., Rispens, G., Csiszar, S., Seeck, O., Rijnders, G., … Noheda, B. (2006). Polar domains in lead titanate films under tensile strain. Physical Review Letters, 96(12). https://doi.org/10.1103/PhysRevLett.96.127602

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