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Domain and Switching Control of the Bulk Photovoltaic Effect in Epitaxial BiFeO3 Thin Films

机译:外延BIFEO3薄膜散装光伏作用的畴和切换控制

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Absence of inversion symmetry is the underlying origin of ferroelectricity, piezoelectricity, and the bulk photovoltaic (BPV) effect, as a result of which they are inextricably linked. However, till now, only the piezoelectric effects (inverse) have been commonly utilized for probing ferroelectric characteristics such as domain arrangements and resultant polarization orientation. The bulk photovoltaic effect, despite sharing same relation with the symmetry as piezoelectricity, has been mostly perceived as an outcome of ferroelectricity and not as a possible analytical method. In this work, we investigate the development of BPV characteristics, i.e. amplitude and angular dependency of short-circuit current, as the ferroelastic domain arrangement is varied by applying electric fields in planar devices of BiFeOsub3/sub films. A rather sensitive co-dependency was observed from measurements on sample with ordered and disordered domain arrangements. Analysis of the photovoltaic response manifested in a mathematical model to estimate the proportion of switched and un-switched regions. The results unravel the potential utility of BPV effect to trace the orientation of the polarization vectors (direction and amplitude) in areas much larger than that can be accommodated in probe-based techniques.
机译:缺乏反转对称性是铁电,压电和散装光伏(BPV)效应的底层起源,因此它们是密不可分地连接的。然而,到目前为止,只有压电效应(逆)通常用于探测诸如域布置的铁电特性和得到的偏振取向。尽管与对称性与对压电性相同的散热效果,但是主要被认为是铁电性的结果,而不是作为可能的分析方法。在这项工作中,我们研究了BPV特性的发展,即短路电流的幅度和角度依赖性,因为通过在Bifeo 3 膜的平面装置中施加电场而变化。观察到具有有序和无序域布置的样品的测量值相当敏感的共依赖性。在数学模型中表现出光伏响应的分析,以估算切换和未切换区域的比例。结果解开了BPV效应的潜在效用,以追踪大于基于探针技术的区域中的极化向量(方向和幅度)的取向。

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