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Structural transformations in femtosecond laser-processed n-type 4H-SiC

机译:飞秒激光处理的n型4H-SiC的结构转变

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We present a comprehensive study of morphological modification induced on and below the surface of n-type 4H-SiC by irradiation with femtosecond laser pulses under tight focusing condition. Spectroscopic investigation of local electronic and structural transformations in SiC-microanostructures suggested bond breaking i.e. transformation of crystalline SiC to amorphous silicon (a-Si) and amorphous carbon (a-C). These observations were augmented by investigations applying atomic force microscopy (AFM), micro-photoluminescence (PL) spectroscopy, and high resolution X-ray diffraction (HRXRD). A high resolution cross-sectional study of laser-modified region with transmission electron microscope (TEM) showed a thin amorphous layer in the vicinity of the geometrical focus with deformations and stacking faults in the sub-surface area. Having considered the existing ablation theories, a complex interplay of fast laser heating followed by melting and rapid re-solidification as well as dynamic relaxation of the laser-induced stresses seems to be responsible for formation of the observed structural changes. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们对飞秒激光脉冲在严格聚焦条件下辐照在n型4H-SiC表面上和表面下引起的形态改性进行了全面的研究。对SiC-微/纳米结构中局部电子和结构转变的光谱研究表明,键断裂,即晶体SiC转变为非晶硅(a-Si)和非晶碳(a-C)。通过应用原子力显微镜(AFM),微光致发光(PL)光谱和高分辨率X射线衍射(HRXRD)进行的研究,这些观察得到了增强。用透射电子显微镜(TEM)对激光修饰区域进行的高分辨率横截面研究显示,在几何焦点附近存在非晶态薄层,在其次表面存在变形和堆积缺陷。考虑到现有的烧蚀理论,快速激光加热,熔化和快速重新凝固以及激光诱导应力的动态松弛的复杂相互作用似乎是所观察到的结构变化的原因。 (C)2016 Elsevier B.V.保留所有权利。

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