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Growth control of oxygen stoichiometry in homoepitaxial SrTiO3 films by pulsed laser epitaxy in high vacuum

机译:脉冲激光外延在高真空下控制同质外延SrTiO3薄膜中氧化学计量的生长

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摘要

In many transition metal oxides, oxygen stoichiometry is one of the most critical parameters that plays a key role in determining the structural, physical, optical, and electrochemical properties of the material. However, controlling the growth to obtain high quality single crystal films having the right oxygen stoichiometry, especially in a high vacuum environment, has been viewed as a challenge. In this work, we show that, through proper control of the plume kinetic energy, stoichiometric crystalline films can be synthesized without generating oxygen defects even in high vacuum. We use a model homoepitaxial system of SrTiO3 (STO) thin films on single crystal STO substrates. Physical property measurements indicate that oxygen vacancy generation in high vacuum is strongly influenced by the energetics of the laser plume, and it can be controlled by proper laser beam delivery. Therefore, our finding not only provides essential insight into oxygen stoichiometry control in high vacuum for understanding the fundamental properties of STO-based thin films and heterostructures, but expands the utility of pulsed laser epitaxy of other materials as well.
机译:在许多过渡金属氧化物中,氧化学计量是最关键的参数之一,在确定材料的结构,物理,光学和电化学性质中起着关键作用。然而,将生长控制以获得具有合适的氧化学计量的高质量单晶膜,特别是在高真空环境中,已被视为挑战。在这项工作中,我们表明,通过适当地控制羽流动能,即使在高真空下也可以合成化学计量的结晶膜而不会产生氧缺陷。我们在单晶STO基板上使用SrTiO3(STO)薄膜的模型同质外延系统。物理性质的测量表明,高真空中氧气空位的产生受激光羽流的能量强烈影响,并且可以通过适当的激光束传输来控制。因此,我们的发现不仅为了解基于STO的薄膜和异质结构的基本特性提供了在高真空下进行氧气化学计量控制的重要见解,而且还扩展了其他材料的脉冲激光外延的效用。

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