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Local electrical imaging of tetragonal domains and field-induced ferroelectric twin walls in conducting SrTiO3

机译:导电SrTiO 3 中的四方晶畴和场感应铁电双壁的局部电成像

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摘要

We demonstrate electrical mapping of tetragonal domains and electric field-induced twin walls in SrTiO as a function of temperature and gate bias utilizing the conducting LaAlO/SrTiO interface and low-temperature scanning electron microscopy. Conducting twin walls appear below 105 K, and new twin patterns are observed after thermal cycling through the transition or on electric field gating. The nature of the twin walls is confirmed by calculating their intersection angles for different substrate orientations. Numerous walls formed when a large side- or back-gate voltage is applied are identified as field-induced ferroelectric twin walls in the paraelectric tetragonal matrix. The walls persist after switching off the electric field and on thermal cycling below 105 K. These observations point to a new type of ferroelectric functionality in SrTiO, which could be exploited together with magnetism and superconductivity in a multifunctional context.
机译:我们证明了利用导电LaAlO / SrTiO界面和低温扫描电子显微镜,SrTiO中的四方晶畴和电场诱导的双壁的电映射随温度和栅极偏压的变化。导热双壁出现在105 K以下,并且在通过过渡过程进行热循环后或在电场门控下观察到新的双晶模式。通过计算不同基材取向的双壁的相交角,可以确定双壁的性质。当施加较大的侧向或背向栅极电压时形成的许多壁被识别为顺电四方矩阵中的场感应铁电双壁。关闭电场并在低于105 K的热循环后,壁仍然存在。这些观察结果表明SrTiO中存在一种新型的铁电功能,可以在多功能环境中与磁性和超导电性一起使用。

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