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Strain tunability of dielectric and ferroelectric properties in epitaxial lead titanate thin films

Strain tunability of dielectric and ferroelectric properties in epitaxial lead titanate thin films
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摘要 Many distinguished properties of epitaxial ferroelectric thin films can be tunable through the misfit strain.The strain tunability of ferroelectric and dielectric properties in epitaxial lead titanate ultrathin films is numerically investigated by using a phase field model,in which the surface effect of polarization is taken into account.The response of polarization to the applied electric field in the thickness direction is examined with different misfit strains at room temperature.It is found that a compressive misfit strain increases the coercive field and the remanent polarization while a tensile misfit strain decreases both of them.The nonlinear dielectric constants of the thin films with tensile misfit strains are much larger than those of the thin films without misfit strains,which are attributed to the existence of the a/c/a/c multiple domains in the thin films under tensile misfit strains. Many distinguished properties of epitaxial ferroelectric thin films can be tunable through the misfit strain.The strain tunability of ferroelectric and dielectric properties in epitaxial lead titanate ultrathin films is numerically investigated by using a phase field model,in which the surface effect of polarization is taken into account.The response of polarization to the applied electric field in the thickness direction is examined with different misfit strains at room temperature.It is found that a compressive misfit strain increases the coercive field and the remanent polarization while a tensile misfit strain decreases both of them.The nonlinear dielectric constants of the thin films with tensile misfit strains are much larger than those of the thin films without misfit strains,which are attributed to the existence of the a/c/a/c multiple domains in the thin films under tensile misfit strains.
出处 《Theoretical & Applied Mechanics Letters》 CAS 2011年第1期14-17,共4页 力学快报(英文版)
基金 the financial support from the National Nature Science Foundation of China (Grants Nos.11002123 and 10832009) Zhejiang Provincial Qianjiang Talent Fund(E9027) Key Innovation Fund(2009R50025)
关键词 misfit strain ferroelectric thin film dielectric constant phase field model domain structures misfit strain ferroelectric thin film dielectric constant phase field model domain structures
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