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首页> 外文期刊>Applied Physics A: Materials Science & Processing >X-ray diffraction from the ripple structures created by femtosecond laser pulses
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X-ray diffraction from the ripple structures created by femtosecond laser pulses

机译:飞秒激光脉冲产生的波纹结构产生的X射线衍射

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In this paper, we present the investigation and characterization of the laser-induced surface structure on an asymmetrically cut InSb crystal. We describe diffraction from the ripple surface and present a theoretical model that can be used to simulate X-ray energy scans. The asymmetrically cut InSb sample was irradiated with short-pulse radiation centred at 800 nm, with fluences ranging from 10 to 80 mJ/cm2. The irradiated sample surface profile was investigated using optical and atomic force microscopy. We have investigated how laser-induced ripples influence the possibility of studying repetitive melting of solids using X-ray diffraction. The main effects arise from variations in local asymmetry angles, which reduce the attenuation length and increase the X-ray diffraction efficiency.
机译:在本文中,我们介绍了不对称切割的InSb晶体上激光诱导的表面结构的研究和表征。我们描述了波纹表面的衍射,并提出了可用于模拟X射线能量扫描的理论模型。用中心波长为800 nm的短脉冲辐射辐照不对称切割的InSb样品,通量范围为10至80 mJ / cm 2 。使用光学和原子力显微镜研究了被辐照的样品表面轮廓。我们已经研究了激光引起的波纹如何影响使用X射线衍射研究固体重复熔化的可能性。主要影响来自局部不对称角度的变化,这些变化会缩短衰减长度并提高X射线衍射效率。

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