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Listening with Curiosity - Tracking the Acoustic Response of Portable Laser Ablation~#

机译:用好奇心倾听 - 跟踪便携式激光烧蚀的声响响应〜#

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摘要

Nowadays, one of the methods of choice for minimal invasive sampling of solid matter is laser ablation (LA). Routine LA sampling is performed commonly in the laboratory and the amount of ablated mass can directly be monitored and analysed. By contrast laser-based sampling in the field, using a portable laser ablation system (pLA), still remains challenging concerning low-absorbing or NIR-transparent samples. The current hardware is limited in regards to photon energy and density resulting in unsteady ablation. But as the actual amount of collected mass is the major crux of on-site sampling, with this performance it is often unknown and estimates can only be made based on the experience from prior method development and the experience of the user. In the following work an easy-to-use method to monitor the amount of ablated material collected during laser-based sampling by measuring the acoustic response is presented. The pLA-system was coupled to inductively coupled plasma mass spectrometry (ICPMS) via a diffusion driven gas exchange device (GED) which allowed to monitor mass removal and acoustic response quasi-simultaneously. For the current instrumentation only actual mass removal leads to the formation of Shockwaves (SW) and, thus, acoustic signals. These events can be used as indicator for executed LA events and counted on an individual basis. The intensity of acoustic signals has been shown to correlate with the LA mass, i.e., the amount of ablated material. This allows to perform re-adjustment of the laser focus during sampling for optimal ablation based on the intensity of the acoustic signal. Likewise, acoustic intensity together with counting allows the operator to make estimates about total mass sampled. Therefore, unsuccessful laser aerosol collection in the field shall become a thing of the past.
机译:如今,固体物质最小侵入性取样的选择方法之一是激光烧蚀(La)。常规La采样通常在实验室中进行,并且可以直接监测和分析烧蚀量的烧蚀量。通过基于对比的基于激光的采样,使用便携式激光烧蚀系统(PLA),仍然仍然具有挑战性,关于低吸收或NIR透明样品。目前的硬件关于光子能量和密度导致不稳定的消融。但随着物质的实际数量是现场采样的主要关键,随着这种性能,它通常是未知的并且估计只能根据先前方法开发的经验和用户的经验而制作。在下面的工作中,通过测量声响应,易于使用的方法来监测基于激光的采样期间收集的烧蚀材料的量。 PLA-System通过扩散从动的气体交换装置(GED)耦合到电感耦合等离子体质谱(ICPMS),其允许监测批量移除和声反应准时的准相同。对于目前的仪器,只有实际的质量移除导致冲击波(SW)的形成,因此,声学信号。这些事件可以用作执行的LA事件的指示器,并按个人计算。声信号的强度已被证明与La Mass,即烧蚀材料的量相关。这允许在采样期间对激光焦点进行重新调整以基于声信号的强度最佳消融。同样地,声强与计数一起允许操作者估计有关总质量采样的估计。因此,该领域的激光气溶胶收集不成功将成为过去的东西。

著录项

  • 来源
    《Chimia》 |2021年第4期|300-304|共5页
  • 作者单位

    Laboratory of Inorganic Chemistry ETH Zurich Vladimir-Prelog-Weg 1 Zurich Switzerland;

    Laboratory for Acoustics/Noise Control Empa Ueberlandstrasse 129 CH-8600 Duebendorf Switzerland;

    Laboratory of Inorganic Chemistry ETH Zurich Vladimir-Prelog-Weg 1 Zurich Switzerland;

    Laboratory of Inorganic Chemistry ETH Zurich Vladimir-Prelog-Weg 1 Zurich Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Acoustic tracking; Laser induced plasma; Portable laser ablation sampling; Sampling in the field;

    机译:声学跟踪;激光诱导等离子体;便携式激光烧蚀采样;在现场进行抽样;
  • 入库时间 2022-08-19 02:15:22

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