论文标题

杂种MBE生长的Batio3薄膜的化学计量控制和光学特性

Stoichiometric Control and Optical Properties of BaTiO3 Thin Films Grown by Hybrid MBE

论文作者

Yalcin, Benazir Fazlioglu, Suceava, Albert, Kuznetsova, Tatiana, Wang, Ke, Gopalan, Venkatraman, Engel-Herbert, Roman

论文摘要

BATIO3是钙钛矿氧化物类别中具有技术相关的材料,具有以上室温铁电位和非常大的电气光学系数,使其非常适合新兴的电子和光子设备。需要一种简单,健壮,直接,可扩展的生长方法来合成对膜化学计量的足够控制的外延batio3薄膜,以实现可重复的薄膜特性。在这里,我们报告了混合分子束外延的Batio3薄膜的生长。使用从反射高能电子衍射,固有的膜晶格参数,膜表面形态和扫描透射电子显微镜获得的互补信息确定一个自调节的生长窗口。随后通过光谱椭圆测量法对Batio3膜进行的光学表征显示,折射率和灭绝系数值与在生长窗口内生长的膜的化学计量学散装BATIO3晶体非常相似。即使在没有晶格参数变化的batio3薄膜的情况下,也观察到光学性质的降解,并伴随着红外光谱中宽的光吸收峰的出现,这归因于涉及存在缺陷态的光学过渡。因此,BATIO3的光学特性可以用作更好,更直接的探针来确定Batio3膜中存在的化学计量水平。

BaTiO3 is a technologically relevant material in the perovskite oxide class with above room temperature ferroelectricity and a very large electro optical coefficient, making it highly suitable for emerging electronic and photonic devices. An easy, robust, straightforward, and scalable growth method is required to synthesize epitaxial BaTiO3 thin films with sufficient control over the film stoichiometry to achieve reproducible thin film properties. Here we report the growth of BaTiO3 thin films by hybrid molecular beam epitaxy. A self regulated growth window is identified using complementary information obtained from reflection high energy electron diffraction, the intrinsic film lattice parameter, film surface morphology, and scanning transmission electron microscopy. Subsequent optical characterization of the BaTiO3 films by spectroscopic ellipsometry revealed refractive index and extinction coefficient values closely resembling those of stoichiometric bulk BaTiO3 crystals for films grown inside the growth window. Even in the absence of a lattice parameter change of BaTiO3 thin films, degradation of optical properties was observed, accompanied by the appearance of a wide optical absorption peak in the infrared spectrum, attributed to optical transitions involving defect states present. Therefore, the optical properties of BaTiO3 can be utilized as a much finer and more straightforward probe to determine the stoichiometry level present in BaTiO3 films.

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