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Ferroelectric nanodomain engineering at the -Z face of lithium niobate single crystals

机译:铌酸锂单晶-Z面的铁电纳米畴工程

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摘要

Scanning force microscopy is used to investigate nanoscale ferroelectric domains engineering at the -Z surface of near-stoichiometric lithium niobate (SLN) single crystals. The SLN single crystal wafers fixed on the metal substrate are polished to about 3 Pm thickness using the alumina powder and colloidal silica solutions. Dot patterns of the nanodomain structure are fabricated at the -Z surface of SLN wafers, which are switched by scanning these wafers with the external field exceeding the coercive field. The -Z polar surfaces in these patterns are preferentially etched by the mixture acid aqueous solution (HF:HNO3 = 1:1), a hexagonal shape of nanodomain patterns is clearly observed, which originates from the three-fold symmetry of the SLN crystal. It is considered that such nanodomain patterns can be effectively employed to create unique templates and devices. (c) 2006 Elsevier B.V. All rights reserved.
机译:扫描力显微镜用于研究近化学计量的铌酸锂(SLN)单晶-Z表面的纳米级铁电畴工程。使用氧化铝粉末和硅胶溶液将固定在金属基板上的SLN单晶晶片抛光至约3 Pm的厚度。在SLN晶片的-Z表面上制作了纳米域结构的点图形,通过扫描具有超过矫顽场的外部场来扫描这些晶片来进行切换。这些图案中的-Z极性表面优先被混合酸水溶液(HF:HNO3 = 1:1)蚀刻,可以清楚地观察到六边形的纳米域图案,其起源于SLN晶体的三重对称性。人们认为,可以有效地采用这种纳米域图案来创建独特的模板和设备。 (c)2006 Elsevier B.V.保留所有权利。

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