飞秒
皮秒
材料科学
掠入射小角散射
散射
光学
激光器
通量
纳米
衍射
物理
非弹性散射
X射线拉曼散射
复合材料
作者
Lisa Randolph,Mohammadreza Banjafar,T. Yabuuchi,Carsten Baehtz,Michael Bußmann,N. P. Dover,Lingen Huang,Yuichi Inubushi,G. Jakob,Mathias Kläui,Dmitriy Ksenzov,Mikako Makita,Kohei Miyanishi,Mamiko Nishiuchi,Özgul Öztürk,Michael Paulus,A. Pełka,Thomas R. Preston,Jan‐Patrick Schwinkendorf,Keiichi Sueda
出处
期刊:Nanomaterials
[Multidisciplinary Digital Publishing Institute]
日期:2024-06-19
卷期号:14 (12): 1050-1050
被引量:2
摘要
Femtosecond high-intensity laser pulses at intensities surpassing 1014 W/cm2 can generate a diverse range of functional surface nanostructures. Achieving precise control over the production of these functional structures necessitates a thorough understanding of the surface morphology dynamics with nanometer-scale spatial resolution and picosecond-scale temporal resolution. In this study, we show that single XFEL pulses can elucidate structural changes on surfaces induced by laser-generated plasmas using grazing-incidence small-angle X-ray scattering (GISAXS). Using aluminium-coated multilayer samples we distinguish between sub-picosecond (ps) surface morphology dynamics and subsequent multi-ps subsurface density dynamics with nanometer-depth sensitivity. The observed subsurface density dynamics serve to validate advanced simulation models representing matter under extreme conditions. Our findings promise to open new avenues for laser material-nanoprocessing and high-energy-density science.
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