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Tailoring dielectric properties of ferroelectric-dielectric multilayers

机译:调整铁电介质多层介质的介电性能

摘要

We develop a nonlinear thermodynamic model for multilayer ferroelectric heterostructures that takes into account electrostatic and electromechanical interactions between layers. We concentrate on the effect of relative layer fractions and in-plane thermal stresses on dielectric properties of Ba0.6Sr0.4TiO3-, BaTiO3-, and PbZr0.2Ti0.8O3 (PZT)-SrTiO3 (STO) multilayers on Si and c-sapphire. We show that dielectric properties of such multilayers can be significantly enhanced by tailoring the growth/processing temperature and the STO layer fraction. Our computations show that large tunabilities (similar to 90% at 400 kV/cm) are possible in carefully designed barium strontium titanate-STO and PZT-STO even on Si for which there exist substantially large in-plane strains.
机译:我们开发了一种多层铁电异质结构的非线性热力学模型,该模型考虑了层之间的静电和机电相互作用。我们专注于相对层分数和平面内热应力对Si和c-蓝宝石上Ba0.6Sr0.4TiO3-,BaTiO3-和PbZr0.2Ti0.8O3(PZT)-SrTiO3(STO)多层介电性能的影响。我们表明,通过调整生长/处理温度和STO层分数,可以显着提高此类多层的介电性能。我们的计算表明,精心设计的钛酸钡锶STO和PZT-STO甚至在存在较大面内应变的Si上,也可能具有较大的可调谐性(在400 kV / cm时接近90%)。

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