首页> 外文会议>Symposium on Microcrystalline and Nanocrystalline Semiconductors-2000 Nov 27-30, 2000, Boston, Massachusetts, U.S.A. >Raman Spectroscopy of Si Nanocrystals in Nanocrystalline Si Superlattices: Size, Shape and Crystallographic Orientation
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Raman Spectroscopy of Si Nanocrystals in Nanocrystalline Si Superlattices: Size, Shape and Crystallographic Orientation

机译:纳米晶硅超晶格中硅纳米晶的拉曼光谱:尺寸,形状和晶体学取向

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We use Raman spectroscopy to study the size, shape and Crystallographic orientation of silicon nanocrystals formed by solid phase crystallization of amorphous Si/SiO_2 Superlattices (SLs) grown by radio-frequency sputtering. The first and second Raman peaks broadening, their relative positions and intensities indicate the presence of nanoscale Si objects with a degree of disorder (grain boundaries) and strain (Si/SiO_2 interfaces). Shapes of Si nanocrystals sandwiched between SiO_2 layers strongly influence the Si/SiO_2 interface roughness, which is inferred from the intensities of folded acoustic phonon scattering. The averaged Crystallographic orientation of Si nanocrystals is determined by polarized Raman analysis. The laterally elongated nanocrystals exhibit <111> preferred Crystallographic orientation along the SL axis due to orientation-dependent crystallization rates. These results demonstrate that control over Si nanocrystals structural parameters has been achieved and that solid phase crystallization of nanometer-thick amorphous Si films remains one of the most promising techniques for Si-based nanoelectronic device fabrication.
机译:我们使用拉曼光谱研究通过射频溅射生长的非晶Si / SiO_2超晶格(SLs)的固相结晶形成的硅纳米晶体的尺寸,形状和晶体学取向。第一和第二拉曼峰加宽,它们的相对位置和强度表明存在具有一定程度的无序度(晶界)和应变(Si / SiO_2界面)的纳米级硅物体。夹在SiO_2层之间的Si纳米晶体的形状会强烈影响Si / SiO_2界面的粗糙度,这是由折叠声声子散射的强度推断出来的。通过极化拉曼分析确定Si纳米晶体的平均晶体学取向。由于取向依赖的结晶速率,横向伸长的纳米晶体沿着SL轴表现出<111>优选的晶体学取向。这些结果表明,已经实现了对Si纳米晶体结构参数的控制,并且纳米厚的非晶Si膜的固相结晶仍然是用于基于Si的纳米电子器件制造的最有希望的技术之一。

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