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General trends of the carbon penetration in Si(001) surfaces: influences of relevant parameters

机译:Si(001)表面碳渗透的一般趋势:相关参数的影响

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Due to its importance in Si-based devices, carbon incorporation in a silicon matrix has become an object of intensive research. However, the size difference between carbon and silicon makes this incorporation difficult, and only small amounts of carbon (a few percent) can be introduced without giving rise to SiC precipitation. Experimental and theoretical studies combined together have led to important progress in the general understanding of surface-subsurface carbon incorporation in the clean and hydrogenated Si(001) reconstructed surfaces. These results emphasize the role of the surface reconstruction and the carbon-carbon interactions. However, the Si(001) surface often presents defects such as dimer vacancies or ad-dimers. By modifying the local stress, these defects can play an important role in carbon incorporation. We review the results of recent studies and discuss the role of different relevant parameters such as local stress, carbon-defect interactions, carbon concentration, position and orientation of the defects, defect-defect distance, defect concentration ... Finally, we show how, acting on the surface defects, one might improve carbon penetration in Si(001) and allow a better control of the carbon position in the subsurface layers.
机译:由于其在基于硅的器件中的重要性,碳掺入硅基体已成为深入研究的目标。然而,碳和硅之间的尺寸差异使这种结合变得困难,并且仅可引入少量的碳(百分之几)而不会引起SiC沉淀。实验和理论研究相结合,导致在清洁和氢化Si(001)重建表面中表面-次表面碳结合的总体理解上取得了重要进展。这些结果强调了表面重建和碳-碳相互作用的作用。但是,Si(001)表面通常会出现缺陷,例如二聚体空位或二聚体。通过改变局部应力,这些缺陷可以在碳结合中起重要作用。我们回顾了最近的研究结果,并讨论了不同相关参数的作用,例如局部应力,碳-缺陷相互作用,碳浓度,缺陷的位置和方向,缺陷-缺陷距离,缺陷浓度...。最后,我们展示了如何通过作用于表面缺陷,可以改善碳在Si(001)中的渗透,并可以更好地控制次表面层中的碳位置。

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