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Electric field induced relaxor behavior in anisotropically strained SrTiO3 films

机译:各向异性应变SrTiO3薄膜中电场诱导的弛豫行为

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Electric fields can modify the dielectric response of ferroelectric and especially relaxor ferroelectric material. Since strained ferroelectric fields represent ideal candidates for relaxor ferroelectrics, we analyzed the impact of ac and dc electric fields and field orientation on the dielectric properties of an isotropically strained epitaxial SrTiO3 films in detail. The tensile strain in the SrTiO3 films causes an increase of the ferroelectric-dielectric phase transition temperature to 258 K and 288 K for small and large tensile strains, respectively. The resulting films represent relaxor-type ferroelectrics with properties that strongly depend on the applied electric field. While a dc bias field significantly suppresses the permittivity in the paraelectric regime ranging from 180 K to 320 K, an ac field leads to an even more pronounced enhancement of the permittivity in an even larger temperature regime (e.g. reduction of up to 50% versus enhancement of up to 380% for 0.5 V/pm dc bias or ac field, respectively). Furthermore the ac field dependence is nonlinear and cannot be explained by the classical Rayleigh law. Frequency dependent measurements show among others that the electric field dependences are strongly related to the relaxor-type behavior. The different dielectric responses are explained in terms of the mobility and dynamic of regimes of uniform polarization, the polar nanoregions, that are generally assumed to be responsible for the relaxor behavior. (C) 2016 Elsevier B.V. All rights reserved.
机译:电场可以改变铁电材料,特别是弛豫铁电材料的介电响应。由于应变铁电场是弛豫铁电的理想候选者,因此我们详细分析了交流和直流电场以及场取向对各向同性应变外延SrTiO3薄膜介电性能的影响。 SrTiO3薄膜中的拉伸应变导致铁电-介电相变温度分别升高到258 K和288 K(对于小和大的拉伸应变)。所得的膜代表弛豫型铁电体,其性质很大程度上取决于所施加的电场。尽管直流偏置场会在180 K至320 K的顺电范围内显着抑制介电常数,而交流场会在更大的温度范围内导致更明显的介电常数提高(例如,与增强相比降低多达50%分别对0.5 V / pm直流偏置或交流场的最大功率为380%)。此外,交流场依赖性是非线性的,无法用经典的瑞利定律解释。频率相关的测量结果表明,电场相关性与张弛器类型的行为密切相关。根据均匀极化机制(极性纳米区域)的迁移率和动态来解释不同的介电响应,一般认为这是造成弛豫行为的原因。 (C)2016 Elsevier B.V.保留所有权利。

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