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Near-field resonance shifts of ferroelectric barium titanate domains upon low-temperature phase transition

机译:低温相变作用下铁电钛酸钡畴的近场共振位移

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摘要

Scattering scanning near-field optical microscopy (s-SNOM) has been established as an excellent tool to probe domains in ferroelectric crystals at room temperature. Here, we apply the s-SNOM possibilities to quantify low-temperature phase transitions in barium titanate single crystals by both temperature-dependent resonance spectroscopy and domain distribution imaging. The orthorhombic-to-tetragonal structural phase transition at 263 K manifests in a change of the spatial arrangement of ferroelectric domains as probed with a tunable free-electron laser. More intriguingly, the domain distribution unravels non-favored domain configurations upon sample recovery to room temperature as explainable by increased sample disorder. Ferroelectric domains and topographic influences are clearly deconvolved even at low temperatures, since complementing our s-SNOM nano-spectroscopy with piezoresponse force microscopy and topographic imaging using one and the same atomic force microscope and tip.
机译:散射扫描近场光学显微镜(s-SNOM)已被确立为在室温下探测铁电晶体中畴的出色工具。在这里,我们应用s-SNOM可能性通过温度依赖性共振光谱法和畴分布成像来量化钛酸钡单晶中的低温相变。 263 K处的正交晶体到四方晶体的结构相变表现为可调谐自由电子激光器探测到的铁电畴空间排列的变化。更有趣的是,当样品恢复到室温时,域分布会解开非有利的域配置,这可以通过增加的样品混乱来解释。甚至在低温下,铁电畴和形貌影响也明显消失了,这是因为我们的s-SNOM纳米光谱仪使用了压电响应力显微镜和使用相同的原子力显微镜和尖端的形貌成像来进行补充。

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