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首页> 外文期刊>Russian physics journal >ROLE OF PLASTIC DEFORMATION MECHANISMS IN THE FORMATION OF NANOSTRUCTURED SILICON AND ITS PHOTOLUMINESCENT PROPERTIES
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ROLE OF PLASTIC DEFORMATION MECHANISMS IN THE FORMATION OF NANOSTRUCTURED SILICON AND ITS PHOTOLUMINESCENT PROPERTIES

机译:塑性变形机制在纳米结构硅的形成中的作用及其光致发光性质

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摘要

The role of plastic deformation mechanisms in the process of obtaining nanostructured layers is demonstrated. The process of obtaining nanostructured silicon consists in growing of silicon oxide lavers of various thicknesses on the silicon wafer surface, their subsequent removal, and treatment by selective chemical etchants (SE) before the formation of defectless silicon islands possessing the photoluminescent properties typical of nanostructured silicon. Based on analysis of the photoluminescence intensity spectra of nanostructured silicon islands, the conclusion is drawn on different plastic deformation mechanisms at different thicknesses of thermally grown silicon oxide. Possible mechanisms of displacement of the intensity maximum in the photoluminescence (PL) spectrum toward shorter wavelengths with decreasing nanostructured silicon island sizes are discussed.
机译:证明了塑性变形机制在获得纳米结构层的过程中的作用。获得纳米结构硅的过程包括在硅晶片表面上生长各种厚度的氧化硅层,随后将其除去,并在形成具有纳米结构硅典型的光致发光特性的无缺陷硅岛之前,通过选择性化学蚀刻剂(SE)进行处理。 。在分析纳米结构的硅岛的光致发光强度光谱的基础上,得出了不同厚度的热生长氧化硅的不同塑性变形机制的结论。讨论了随着纳米结构硅岛尺寸的减小,光致发光(PL)光谱中的最大强度向较短波长位移的可能机理。

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