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A new imaging-based method for alignment of multiple laser beams

机译:一种用于对准多个激光束的基于新的成像方法

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摘要

A new method for multiple laser beams alignment, useful in a wide range of spectroscopies, is proposed and demonstrated. The method, based on the coupling of spatial map imaging (SMI) with velocity map imaging (VMI), aided beams visualization, through interrogation of the ionization signal of different species in a time-of-flight mass spectrometer. This approach is very effective for alignment and for evaluating the spatial overlap of laser beams with a molecular beam. This was demonstrated by monitoring the resonant two-photon ionization spectrum of 2-phenylethylamine (PEA) monomer and its hydrated (PEA-H2O) cluster and the ionization-loss stimulated Raman spectrum of the cluster, via VMIs accumulation, as a function of the exciting laser wavelength. The former permitted immediate classification of the features in the spectrum, corresponding to the molecular ion or the cluster. The proposed methodology will be useful in other challenging multiple laser beam experiments for spectroscopic studies and is expected to improve extensively their outcome. (C) 2020 Elsevier B.V. All rights reserved.
机译:提出并证明了一种用于多种光谱的多种激光束对准的新方法。该方法,基于空间地图成像(SMI)的耦合,具有速度映射成像(VMI),通过在飞行时间质量光谱仪中询问不同物种的电离信号的辅助光束可视化。这种方法对于对准非常有效,并且用于使用分子束评估激光束的空间重叠。通过监测2-苯基乙胺(PEA)单体及其水合(PEA-H2O)簇的共振双光子电离光谱和簇的电离损失刺激拉曼光谱通过VMIS累积来证明这一点是通过VMIS累积来证明的激光激光波长。前者允许立即分类光谱中的特征,对应于分子离子或簇。该提出的方法在其他挑战的多种激光束实验中有用,用于光谱研究,预计将改善它们的结果。 (c)2020 Elsevier B.v.保留所有权利。

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