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Photovoltaic effect in multi-domain ferroelectric perovskite oxides

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arxiv 1811.07948 v1 pith:WJ2UGCLL submitted 2018-11-19 cond-mat.mtrl-sci

classification cond-mat.mtrl-sci
keywords effectdomainferroelectricphotovoltaicdegreemodelmulti-domainpolarization
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We propose a device model that elucidates the role of domain walls in the photovoltaic effect in multi-domain ferroelectric perovskites. The model accounts for the intricate interplay between ferroelectric polarization, space charges, photo-generation and electronic transport. When applied to bismuth ferrite, results show a significant electric potential step across both 71-degree and 109-degree domain walls, which in turn contributes to the photovoltaic (PV) effect. We also find a strong correlation between polarization and oxygen octahedra tilts, which indicates the nontrivial role of the latter in the PV effect. The domain wall-based PV effect is further shown to be additive in nature, allowing for the possibility of generating above-bandgap voltage

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