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Diffuse X-ray scattering from 180 degrees ferroelectric stripe domains: polarization-induced strain, period disorder and wall roughness

机译:180度铁电条纹域的X射线散射:极化引起的应变,周期无序和壁粗糙度

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摘要

A key element in ferroic materials is the presence of walls separating domains with different orientations of the order parameter. It is demonstrated that 180 degrees stripe domains in ferroelectric films give rise to very distinct features in their diffuse X-ray scattering (DXS) intensity distributions. A model is developed that allows the determination of not only the domain period but also the period disorder, the thickness and roughness of the domain walls, and the strain induced by the rotation of the polarization. As an example, the model is applied to ferroelectric/paraelectric superlattices. Temperature-dependent DXS measurements reveal that the polarization-induced strain decreases dramatically with increasing temperature and vanishes at the Curie temperature. The motion of ferroelectric domain walls appears to be a collective process that does not create any disorder in the domain period, whereas pinning by structural defects increases the wall roughness. This work will facilitate in situ quantitative studies of ferroic domains and domain wall dynamics under the application of external stimuli, including electric fields and temperature.
机译:铁磁材料中的一个关键因素是壁的存在,这些壁分隔了具有不同阶数方向参数的磁畴。结果表明,铁电薄膜中的180度条纹区域在其漫射X射线散射(DXS)强度分布中产生了非常明显的特征。建立了一个模型,该模型不仅可以确定畴周期,而且可以确定周期无序,畴壁的厚度和粗糙度以及由极化旋转引起的应变。例如,该模型适用于铁电/顺电超晶格。与温度有关的DXS测量结果表明,极化引起的应变随着温度的升高而急剧下降,并在居里温度下消失。铁电畴壁的运动似乎是一个集体过程,在畴域中不会产生任何混乱,而结构缺陷引起的钉扎会增加壁的粗糙度。这项工作将有助于在外部刺激(包括电场和温度)的作用下对铁素体畴和畴壁动力学进行原位定量研究。

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