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Morphology control of single-crystal InSb nanostructures by tuning the growth parameters

机译:通过调整生长参数通过晶体INSB纳米结构的形态控制

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Research interest in indium antimonide (InSb) has increased significantly in recent years owing to its intrinsic properties and the consequent opportunities to implement next-generation quantum devices. Hence, the precise, reproducible control over morphology and crystalline quality becomes of paramount importance for a practical quantum-device technology. Here, we investigate the growth of InSb nanostructures with different morphologies on InAs stems without pre-growth efforts (patterning). InSb nanostructures such as nanowires (1D), nanoflags (2D) and nanocubes (3D) have been realized by means of Au-assisted chemical beam epitaxy by tailoring the growth parameters like growth temperature, precursor fluxes, sample rotation and substrate orientation. Through morphological and crystallographic characterization, all the as-grown InSb 2D nanostructures are found to be single-crystalline with zinc blende structure, free from any defects such as stacking faults and twin planes. The existence of two families of 2D nanostructures, characterised by an aperture angle at the base of 145 degrees and 160 degrees, is observed and modelled. This study provides useful guidelines for the controlled growth of high-quality InSb nanostructures with different shape.
机译:由于其内在特性和实现下一代量子器件的机会,近年来抗疟剂(INSB)的研究兴趣显着增加。因此,对形态学和结晶质量的精确,可再现的控制对于实际量子器件技术至关重要。在这里,我们研究INAS源不同形态的INSB纳米结构的生长无需预先成长努力(图案化)。通过剪裁生长参数,如uu辅助化学束外延,通过定制生长参数,如生长参数,如生长温度,前体熔移,样品旋转和基板取向,已经实现了纳米线(1d),纳米块(2d)和纳米孔(3D)的INSB纳米结构已经实现。通过形态学和晶体表征,发现所有生长的INSB 2D纳米结构是单晶,其具有锌混合结构,没有任何缺陷,例如堆叠故障和双平面。观察和建模的两个纳米结构的两个2D纳米结构的家族的存在,其特征在于145度和160度。本研究提供了具有不同形状的高质量内部纳米结构的控制生长的有用指导。

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