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Mechanism of polarization fatigue in BiFeO _3

机译:BiFeO _3中的极化疲劳机理

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Fatigue in ferroelectric oxides has been a long lasting research topic since the development of ferroelectric memory in the late 1980s. Over the years, different models have been proposed to explain the fatigue phenomena. However, there is still debate on the roles of oxygen vacancies and injected charges. The main difficulty in the study of fatigue in ferroelectric films is that the conventional vertical sandwich structure prevents direct observation of the microscopic evolution through the film thickness during the electric field cycling. To circumvent this problem, we take advantage of the large in-plane polarization of BiFeO _3 and conduct direct domain and local electrical characterizations using a planar device structure. The combination of piezoresponse force microscopy and scanning kelvin probe microscopy allows us to study the local polarization and space charges simultaneously. It is observed that charged domain walls are formed during the electrical cycling, but they do not cause polarization fatigue. After prolonged cycling, injected charges appear at the electrode/film interfaces, where domains are pinned. When the pinned domains grow across the channel, macroscopic fatigue appears. The role of injected charges in polarization fatigue of BiFeO _3 is clearly demonstrated.
机译:自从1980年代后期发展铁电存储器以来,铁电氧化物的疲劳一直是一个长期的研究课题。多年来,已经提出了不同的模型来解释疲劳现象。但是,关于氧空位和注入电荷的作用仍存在争议。研究铁电薄膜疲劳的主要困难在于,传统的垂直夹层结构无法在电场循环过程中直接观察通过薄膜厚度的微观演变。为了解决这个问题,我们利用BiFeO _3的大平面极化特性,并使用平面器件结构进行直接畴和局部电学表征。压电响应力显微镜和开尔文扫描显微镜的结合使我们能够同时研究局部极化和空间电荷。可以观察到,在电循环期间会形成带电畴壁,但它们不会引起极化疲劳。长时间循环后,注入的电荷会出现在电极/薄膜界面上,并在其中固定畴。当固定域在整个通道上增长时,就会出现宏观疲劳。清楚地证明了注入电荷在BiFeO _3的极化疲劳中的作用。

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