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Formation of self-organized nanostructures on Si surfaces during low energy ion beam erosion

机译:低能离子束腐蚀过程中在硅表面上形成自组织纳米结构

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Low-energy ion beam erosion has been shown to be a promising alternative approach for generation of self-organized patterns on crystal surfaces. In addition to the removal of material from the surface due to sputtering caused by energy and momentum transfer from the incoming ions to target atoms, the interplay between sputter-induced roughening (result in a rough surface) and various surface relaxation mechanisms(result in a smooth surface) can lead to a wide range of well ordered patterns on the surface. In the experiments the Low-energy Ar~+ ion beam were produced in a cleaning ion source on the magnetron sputter equipment from Belarus, and dot and ripple patterns have obtained at the different ion beam incidence. The FFT method is used to analyze the obtained nanostructures. In this paper results on self-organized patterns formed during low energy Ar~+ ion beam erosion on Si surfaces are presented. It is analyzed the influence of ion beam parameters, such as the ion incidence angle, ion flux, and ion energy, to the self-organized nanostructures, and given the patterns formed on the Si surfaces in the case without sample rotation . The experimental results show periodic structures are depended deeply on the incidence angle of ion beams, and ripple patterns transferred from dot patterns with the increasing in ion beam incidence angle, which coincided with the Bradley-Harper theory of ripple formation.
机译:低能量离子束腐蚀已被证明是在晶体表面上生成自组织图形的一种有前途的替代方法。除了由于能量和动量从入射离子到目标原子的转移所引起的溅射而从表面去除材料外,溅射诱导的粗糙化(导致表面粗糙)和各种表面弛豫机制(导致表面粗糙度)之间也存在相互作用。光滑的表面)可以在表面上产生各种有序的图案。在实验中,低能量的Ar〜+离子束是在白俄罗斯的磁控溅射设备上的清洁离子源中产生的,并且在不同的离子束入射率下获得了点和波纹图案。 FFT方法用于分析获得的纳米结构。本文给出了在低能Ar〜+离子束腐蚀Si表面时形成的自组织图形的结果。分析了离子束参数(例如离子入射角,离子通量和离子能量)对自组织纳米结构的影响,并给出了在没有样品旋转的情况下在Si表面上形成的图案。实验结果表明,周期性结构在很大程度上取决于离子束的入射角,并且随着离子束入射角的增加,点阵图形从点阵图形转移而来的纹波图形也与Bradley-Harper纹波形成理论相吻合。

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