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Crystal structures on a copper thin film with a surface of periodic self-organized nanostructures induced by femtosecond laser pulses

机译:飞秒激光脉冲在具有周期性自组织纳米结构表面的铜薄膜上的晶体结构

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摘要

Crystal structures on a single-crystalline copper film with a periodic self-organized surface induced by femtosecond laser pulses with fluences of 0.08–0.64 J/cm[2] have been analyzed by transmission electron microscopy. It was found that the crystal structures depend on laser fluence: polycrystalline structures are formed at fluences less than 0.2 J/cm[2], an amorphous state forms around 0.3 J/cm[2], and polycrystalline structures form again at fluences greater than 0.35 J/cm[2]. The energy spectrum of ions emitted during the formation of periodic structures on the surface shows that the energy of copper ions is high enough to transform the crystal to an amorphous state. A conceptual mechanism for crystal structure transformation by the penetration of energetic ions generated in the process of self-organization of periodic structures is proposed.
机译:通过透射电子显微镜分析了飞秒激光脉冲在0.08–0.64 J / cm [2]的通量下在具有周期性自组织表面的单晶铜膜上的晶体结构。发现晶体结构取决于激光能量密度:能量密度小于0.2 J / cm [2]时会形成多晶结构,0.3µJ / cm [2]左右会形成非晶态,而能量密度大于420nm时会再次形成多晶结构。 0.35 J / cm [2]。在表面上形成周期性结构期间发射的离子能谱表明,铜离子的能量足够高,可以将晶体转变为非晶态。提出了一种通过周期性结构自组织过程中产生的高能离子渗透来转变晶体结构的概念性机理。

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