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Energy landscape scheme for an intuitive understanding of complex domain dynamics in ferroelectric thin films

机译:用于直观了解铁电薄膜中复杂域动力学的能量景观方案

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摘要

Fundamental understanding of domain dynamics in ferroic materials has been a longstanding issue because of its relevance to many systems and to the design of nanoscale domain-wall devices. Despite many theoretical and experimental studies, a full understanding of domain dynamics still remains incomplete, partly due to complex interactions between domain-walls and disorder. We report domain-shape-preserving deterministic domain-wall motion, which directly confirms microscopic return point memory, by observing domain-wall breathing motion in ferroelectric BiFeO3 thin film using stroboscopic piezoresponse force microscopy. Spatial energy landscape that provides new insights into domain dynamics is also mapped based on the breathing motion of domain walls. The evolution of complex domain structure can be understood by the process of occupying the lowest available energy states of polarization in the energy landscape which is determined by defect-induced internal fields. Our result highlights a pathway for the novel design of ferroelectric domain-wall devices through the engineering of energy landscape using defect-induced internal fields such as flexoelectric fields.
机译:由于铁氧体材料与许多系统和纳米级畴壁器件的设计相关,因此对铁素体材料中的畴动力学的基本理解一直是一个长期存在的问题。尽管进行了许多理论和实验研究,但对域动力学的完整理解仍然不完整,部分原因是域壁与障碍之间的复杂相互作用。我们报告了通过使用频闪压电响应力显微镜观察铁电BiFeO3薄膜中的畴壁呼吸运动,从而保持畴形的确定性畴壁运动,该运动直接证实了微观的返回点记忆。还根据畴壁的呼吸运动来映射提供对畴动态的新见解的空间能量景观。复杂域结构的演化可以通过在能量图中占据极化的最低可用能量状态的过程来理解,该过程由缺陷引起的内部场确定。我们的结果突出了通过利用缺陷诱发的内部电场(例如柔性电场)对能源格局进行工程设计,从而实现铁电畴壁器件新颖设计的途径。

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