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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Multiplicity and contiguity of ablation mechanisms in laser-assisted analytical micro-sampling
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Multiplicity and contiguity of ablation mechanisms in laser-assisted analytical micro-sampling

机译:激光辅助分析微量采样中烧蚀机理的多样性和连续性

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Laser ablation is implemented in several scientific and technological fields, as well as a rapid sample introduction technique in elemental and trace analysis. At high laser fluence, the ejection of micro-sized droplets causes the enhancement of the surface recession speed and depth resolution degradation as well as the alteration of the sampling stoichiometry. The origin of such large particles seems to be due to at least two different processes, phase explosion and melt splashing. Experimental evidence for both was found in metallic matrices, whereas non-metallic samples showed more complex phenomena like cracking. The spatial distribution of the beam energy profile is responsible for significant differences in the ablation mechanism across the irradiated region and for heterogeneous sampling. Under Gaussian irradiance distribution, the center of the crater, where the irradiance is the highest, experienced a fast heating with rapid ejection of a mixture of particles and vapor (spinodal breakdown). The crater periphery was subjected to more modest irradiation, with melt mobilization and walls formation. The overall resulting particle size distribution was composed of an abundant nano-sized fraction, produced by vapor condensation, and a micro-sized fraction during melt expulsion. (c) 2006 Elsevier B.V. All rights reserved.
机译:激光烧蚀已在多个科学技术领域中实现,并且在元素和痕量分析中采用了快速的样品引入技术。在高激光通量下,微小液滴的喷射会导致表面退缩速度的提高和深度分辨率的下降,以及采样化学计量的改变。这种大颗粒的起源似乎是由于至少两个不同的过程,即相爆炸和熔体飞溅。在金属基体中发现了两者的实验证据,而非金属样品则表现出更复杂的现象,如开裂。束能量分布的空间分布是导致整个照射区域的烧蚀机制存在显着差异的原因,也是造成采样不均匀的原因。在高斯辐照度分布下,辐照度最高的陨石坑中心经历了快速加热,并迅速喷射出颗粒和蒸气的混合物(闪烁破坏)。火山口外围受到更适度的辐照,具有熔融动员和壁形成。所得的总粒度分布由通过蒸汽冷凝产生的大量纳米级分和在熔融物排出期间的微米级分组成。 (c)2006 Elsevier B.V.保留所有权利。

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