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Dynamic Manipulation in Piezoresponse Force Microscopy: Creating Nonequilibrium Phases with Large Electromechanical Response

机译:压电响应力显微镜中的动态操纵:具有大机电响应的非QuiLibrium阶段

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摘要

Domain walls and topological defects in ferroelectric materials have emerged as a powerful tool for functional electronic devices including memory and logic. Similarly, wall interactions and dynamics underpin a broad range of mesoscale phenomena ranging from giant electromechanical responses to memory effects. Exploring the functionalities of individual domain walls, their interactions, and controlled modifications of the domain structures is crucial for applications and fundamental physical studies. However, the dynamic nature of these features severely limits studies of their local physics since application of local biases or pressures in piezoresponse force microscopy induce wall displacement as a primary response. Here, we introduce an approach for the control and modification of domain structures based on automated experimentation, whereby real-space image-based feedback is used to control the tip bias during ferroelectric switching, allowing for modification routes conditioned on domain states under the tip. This automated experiment approach is demonstrated for the exploration of domain wall dynamics and creation of metastable phases with large electromechanical response.
机译:铁电材料中的畴壁和拓扑缺陷已成为功能电子设备的强大工具,包括存储器和逻辑。类似地,墙壁相互作用和动态支撑着广泛的Mesoscale现象范围从巨型机电响应到记忆效应。探索各个领域墙壁的功能,它们的相互作用和控制域结构的控制修改对于应用和基本物理研究至关重要。然而,这些特征的动态性质严重限制了它们的局部物理学的研究,因为在压电响应力显微镜中施加局部偏差或压力诱导壁位移作为主要反应。这里,我们介绍一种基于自动实验的域结构控制和修改的方法,由此基于空间图像的反馈用于控制铁电切换期间的尖端偏压,允许在尖端下方的域状态上调节修改路由。这种自动化实验方法是为了探索域壁动力学和具有大机电响应的亚稳态阶段的创建。

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