Instituto de Química Física Rocasolano, CSIC, C/Serrano, 119, 28006 Madrid, Spain.
Phys Chem Chem Phys. 2018 Jun 27;20(25):16956-16965. doi: 10.1039/c8cp02825g.
Femtosecond laser ablation of solids is known to produce ejection of material to a large extent composed of particles of nanometer dimensions for a broad variety of targets. This work explores the ultrashort laser ablation of metal targets (Ag, Cu, Al, Mn) through non-conventional diagnostics based on the nonlinear response of the transient medium created upon ablation. The full temporal mapping of the nonlinear response constitutes a useful flag that signals the abundance of clusters and nanoparticles in the plume. The use of this method for diagnosis has allowed us to perform direct observation of middle-sized aggregates that are extremely elusive with other techniques. Additionally, one crucial and seldom explored parameter in this context has been identified: the ablation laser spot size. Optimum conditions for overall nanoparticle generation as well as relative nanoparticle/cluster/atom ratios have been found.
飞秒激光烧蚀固体在很大程度上已知会产生由纳米尺寸颗粒组成的物质喷射,适用于各种不同的目标。这项工作通过基于烧蚀时瞬态介质的非线性响应的非常规诊断方法,探索了金属靶材(Ag、Cu、Al、Mn)的超短激光烧蚀。非线性响应的完整时间映射构成了一个有用的标志,表明羽流中团簇和纳米颗粒的丰度。该方法的诊断应用使我们能够直接观察到其他技术极难探测到的中等大小的聚集体。此外,在这种情况下,已经确定了一个关键且很少被探索的参数:烧蚀激光光斑尺寸。已经找到了产生整体纳米颗粒的最佳条件以及纳米颗粒/团簇/原子的相对比值。