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2D Atomic Displacement Map of Ferroelectric Domain Walls from HREM Images and Local Complex Dielectric Function from PEELS in Barium-Titanate Based Ceramics

机译:从钡 - 钛基陶瓷中剥离的HREM图像和局部复合电函数的铁电畴壁的2D原子位移图

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Dielectric properties and mechanisms of ferroelectricity of barium-titanate-based ceramics have been investigated through complementary approaches in order to have a better and more fundamental understanding of material behaviour. This was done with an extensive use of transmission electron microscopy and associated techniques. Two local methodologies are proposed in order to study low-frequency (static) and very-high-frequency phenomena involved in the ferroelectricity of BaTiO_3: First, a quantitative processing of high-resolution TEM images of ferroelectric domain walls have been developed. Structure of domain walls is then described by 2D atomic displacement maps and comparison with simulations based on Landau-Ginzburg theory is then possible. Second, the analysis of the plasmon region in electron energy loss spectra (which has given rise to the development of software) allows one to determine the complex dielectric function (Kramer-Kronig analysis) with a spatial resolution of a few nanometres. In this study evidence is given that a local radial gradient of dopant concentration in small grains gives rise to different times of relaxation. This is tentatively interpreted in terms of electronic band structure.
机译:通过互补方法研究了钡 - 钛酸盐的陶瓷铁电性的介电性质和机制,以便对材料行为具有更好的和更重要的理解。这是通过广泛使用透射电子显微镜和相关技术进行的。提出了两种本地方法,以研究BATIO_3的铁电性涉及的低频(静态)和非常高频率现象:首先,已经开发出铁电畴壁的高分辨率TEM图像的定量处理。然后,由2D原子位移图描述了结构域壁的结构,然后可能与基于Landau-Ginzburg理论的模拟的比较。其次,电子能量损失光谱中的等离子体区域的分析(对软件的发展引起)允许人们确定具有几纳米的空间分辨率的复杂介电功能(Kramer-Kronig分析)。在这项研究中,鉴于少量掺杂剂浓度的局部径向梯度引起不同的松弛时间。这是在电子频带结构方面解释的。

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