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Understanding surface structure and chemistry of single crystal lanthanum aluminate

机译:了解单晶铝酸镧的表面结构和化学性质

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摘要

The surface crystallography and chemistry of a LaAlO3 single crystal, a material mainly used as a substrate to deposit technologically important thin films (e.g. for superconducting and magnetic devices), was analysed using surface X-ray diffraction and low energy ion scattering spectroscopy. The surface was determined to be terminated by Al-O species, and was significantly different from the idealised bulk structure. Termination reversal was not observed at higher temperature (600 °C) and chamber pressure of 10−10 Torr, but rather an increased Al-O occupancy occurred, which was accompanied by a larger outwards relaxation of Al from the bulk positions. Changing the oxygen pressure to 10−6 Torr enriched the Al site occupancy fraction at the outermost surface from 0.245(10) to 0.325(9). In contrast the LaO, which is located at the next sub-surface atomic layer, showed no chemical enrichment and the structural relaxation was lower than for the top AlO2 layer. Knowledge of the surface structure will aid the understanding of how and which type of interface will be formed when LaAlO3 is used as a substrate as a function of temperature and pressure, and so lead to improved design of device structures.
机译:使用表面X射线衍射和低能离子散射光谱分析了LaAlO3单晶的表面晶体学和化学性质,LaAlO3单晶主要用作沉积具有技术重要性的薄膜(例如,用于超导和磁性设备)的衬底。确定该表面被Al-O物质终止,并且与理想的本体结构显着不同。在较高温度(600 C)和腔室压力为10 −10 Torr的条件下,未观察到终止反应的逆转,但发生了Al-O占用增加的现象,同时伴随着较大的Al向外部的弛豫大头寸。将氧气压力改变为10 −6 Torr可使最外表面的Al位置占有率从0.245(10)增至0.325(9)。相比之下,位于下一个次表面原子层的LaO则没有化学富集,其结构弛豫性低于顶层AlO2层。表面结构的知识将有助于理解当将LaAlO3用作衬底时,温度和压力的函数将如何以及形成哪种类型的界面,从而改善了器件结构的设计。

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