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表面能降低驱动下的坑图案化Si(001)衬底的形态演变

Morphological Evolution of Pit-Patterned Si(001) Substrates Driven by Surface-Energy Reduction.

作者信息

Salvalaglio Marco, Backofen Rainer, Voigt Axel, Montalenti Francesco

机构信息

Institute of Scientific Computing, Technische Universität Dresden, Dresden, 01062, Germany.

IHP, Im Technologiepark 25, Frankfurt (Oder), 15236, Germany.

出版信息

Nanoscale Res Lett. 2017 Sep 29;12(1):554. doi: 10.1186/s11671-017-2320-5.

Abstract

Lateral ordering of heteroepitaxial islands can be conveniently achieved by suitable pit-patterning of the substrate prior to deposition. Controlling shape, orientation, and size of the pits is not trivial as, being metastable, they can significantly evolve during deposition/annealing. In this paper, we exploit a continuum model to explore the typical metastable pit morphologies that can be expected on Si(001), depending on the initial depth/shape. Evolution is predicted using a surface-diffusion model, formulated in a phase-field framework, and tackling surface-energy anisotropy. Results are shown to nicely reproduce typical metastable shapes reported in the literature. Moreover, long time scale evolutions of pit profiles with different depths are found to follow a similar kinetic pathway. The model is also exploited to treat the case of heteroepitaxial growth involving two materials characterized by different facets in their equilibrium Wulff's shape. This can lead to significant changes in morphologies, such as a rotation of the pit during deposition as evidenced in Ge/Si experiments.

摘要

通过在沉积之前对衬底进行合适的坑图案化处理,可以方便地实现异质外延岛的横向有序排列。控制坑的形状、取向和尺寸并非易事,因为它们是亚稳态的,在沉积/退火过程中会显著演变。在本文中,我们利用一个连续介质模型来探索根据初始深度/形状,在Si(001)上可能出现的典型亚稳态坑形态。使用在相场框架中制定并考虑表面能各向异性的表面扩散模型来预测演变情况。结果表明能很好地再现文献中报道的典型亚稳态形状。此外,发现不同深度的坑轮廓的长时间尺度演变遵循相似的动力学路径。该模型还被用于处理涉及两种材料的异质外延生长情况,这两种材料在其平衡的伍尔夫形状中具有不同的晶面。这可能导致形态发生显著变化,例如在Ge/Si实验中所证明的,在沉积过程中坑会发生旋转。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70dd/5622022/81a7d0c3f880/11671_2017_2320_Fig1_HTML.jpg

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