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Electromechanical coupling coefficient of isotropic sample with a marked electrostriction

机译:各向同性样品具有明显的电致伸缩力机电耦合系数

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Isotropic sample of single ferroelectric crystal (STO) with cubic symmetry or the epitaxial BSTO film-does notexhibit a piezoelectric effect, but is characterized by electrostriction. The induced piezoelectric effect occurs under the dc electric field. Using electromechanical equations for this material in presence of both the dc and ac electric field makes possible to describe the transformation of energy of electromagnetic field into acoustic oscillations. The transformation intensity is estimated by the electromechanical coupling coefficient determined as the ratio of the energy of alternating electromechanical interaction to the geometric mean of alternating electrical and mechanical energy. For the induced piezoeffect, the analytical model for the electromechanical coupling coefficient is obtained using phenomenological description of the dc electric field dependence of the dielectric permittivity. There is a maximum on the dependence of the electromechanical coupling coefficient on the dc field. The value of maximum and related dc field depend on the ferroelectric film quality.
机译:具有立方对称性或外延BSTO膜的单铁电晶体(STO)的各向同性样品没有压电效应,但具有电致伸缩特性。感应的压电效应在直流电场下发生。在直流和交流电场均存在的情况下,针对该材料使用机电方程式,可以描述电磁场能量转换为声波振荡的过程。通过机电耦合系数来估算转变强度,该机电耦合系数被确定为交替的机电相互作用的能量与交替的电能和机械能的几何平均值之比。对于感应压电效应,使用现象学描述介电常数与直流电场的关系,获得了机电耦合系数的分析模型。机电耦合系数对直流场的依赖性最大。最大和相关直流场的值取决于铁电薄膜的质量。

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