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Temperature dependence of incommensurate modulation in Ca0.28Ba0.72Nb2O6

机译:Ca0.28Ba0.72Nb2O6中不相称调制的温度依赖性

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摘要

We present an electron microscopy and diffraction study of a Ca xBa 1−xNb 2O 6 ceramic with x=0.28 (CBN28), a ferroelectric material with a partially filled tetragonal tungsten-bronze structure. The microstructure has strong similarities to that of Sr xBa 1−xNb 2O 6, with an average orthorhombic symmetry and an intimate intermixture of merohedral twin variants at a length scale of tens of nanometers. Superstructure spots in diffraction patterns are displaced by a one-dimensional incommensurate modulation, characterized by a propagation vector δδ0. Heating experiments show that δ is strongly coupled to ferroelectric polarization, decreasing as 180° ferroelectric domains become more finely spaced and needle-like as the Curie temperature TC is approached during heating and increasing once more above TC. No change in symmetry is observed at TC, consistent with a transition from ferroelectric to antiferroelectric (or ferrielectric) relaxor properties. The superstructure spots and incommensurate modulation disappear ∼250°C above TC, consistent with polar regions in the material becoming fully transient.
机译:我们介绍了 X=0.28 (CBN28) 的 Ca xBa 1−xNb 2O 6 陶瓷的电子显微镜和衍射研究,这是一种具有部分填充的四方钨青铜结构的铁电材料。该微观结构与Sr xBa 1−xNb 2O 6具有很强的相似性,具有平均的正交对称性和数十纳米长度尺度的微面体孪生变体的紧密混合。衍射图中的上层建筑斑点被一维不相称调制所取代,其特征在于传播矢量δδ0。加热实验表明,δ与铁电极化密切相关,随着加热过程中接近居里温度TC,180°铁电畴变得更加细小和针状,并且再次增加到TC以上。在TC处没有观察到对称性的变化,这与从铁电到反铁电(或铁电)弛豫特性的转变一致。上部结构斑点和不相称的调制在TC以上约250°C消失,与材料中的极性区域完全瞬态一致。

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