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Structural contribution to the roughness of supersmooth crystal surface

机译:结构对超光滑晶体表面粗糙度的影响

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摘要

Technological advances in processing crystals (Si, sapphire α-Al _2O_3, SiC, GaN, LiNbO_3, SrTiO_3, etc.) of substrate materials and X-ray optics elements make it possible to obtain supersmooth surfaces with a periodicity characteristic of the crystal structure. These periodic structures are formed by atomically smooth terraces and steps of nano- and subnanometer sizes, respectively. A model surface with such nanostructures is proposed, and the relations between its roughness parameters and the height of atomic steps are determined. The roughness parameters calculated from these relations almost coincide with the experimental atomic force microscopy (AFM) data obtained from 1 × 1 and 10 × 10 μm areas on the surface of sapphire plates with steps. The minimum roughness parameters for vicinal crystal surfaces, which are due to the structural contribution, are calculated based on the approach proposed. A comparative analysis of the relief and roughness parameters of sapphire plate surfaces with different degrees of polishing is performed. A size effect is established: the relief height distribution changes from stochastic to regular with a decrease in the surface roughness.
机译:加工基板材料和X射线光学元件的晶体(Si,蓝宝石α-Al_2O_3,SiC,GaN,LiNbO_3,SrTiO_3等)的技术进步使获得具有晶体结构周期性特征的超光滑表面成为可能。这些周期性结构分别由原子级光滑的阶梯和纳米级和亚纳米级的台阶形成。提出了具有这种纳米结构的模型表面,并确定了其粗糙度参数与原子台阶高度之间的关系。从这些关系计算出的粗糙度参数几乎与从原子蓝宝石表面上的1×1和10×10μm区域分步获得的实验原子力显微镜(AFM)数据一致。基于所提出的方法,计算了由于结构贡献而导致的邻近晶体表面的最小粗糙度参数。对不同抛光度的蓝宝石板表面的凸度和粗糙度参数进行了比较分析。建立了尺寸效应:随着表面粗糙度的减小,浮雕高度分布从随机变化为规则。

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