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High resolution spatial map imaging of a gaseous target

机译:气态目标的高分辨率空间图成像

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Electrostatic ion imaging with the velocity map imaging mode is a widely used method in atomic and molecular physics and physical chemistry. In contrast, the spatial map imaging (SMI) mode has received very little attention, despite the fact that it has been proposed earlier [A. T. J. B. Eppink and D. H. Parker, Rev. Sci. Instrum. 68, 3477 (1997)]10.1063/1.1148310. Here, we present a detailed parametric characterization of SMI both by simulation and experiment. One-, two- and three-dimensional imaging modes are described. The influence of different parameters on the imaging process is described by means of a Taylor expansion. To experimentally quantify elements of the Taylor expansion and to infer the spatial resolution of our spectrometer, photoionization of toluene with a focused laser beam has been carried out. A spatial resolution of better than 4 μm out of a focal volume of several mm in diameter has been achieved. Our results will be useful for applications of SMI to the characterization of laser beams, the overlap control of multiple particle or light beams, and the determination of absolute collision cross sections.
机译:具有速度图成像模式的静电离子成像是原子和分子物理以及物理化学中广泛使用的方法。相比之下,尽管空间地图成像(SMI)模式早已提出[A. T. J. B. Eppink和D. H. Parker,Rev。Sci。仪器68,3477(1997)] 10.1063 / 1.1148310。在这里,我们通过仿真和实验给出了SMI的详细参数表征。描述了一维,二维和三维成像模式。通过泰勒展开描述了不同参数对成像过程的影响。为了实验上量化泰勒展开的元素并推断我们的光谱仪的空间分辨率,已使用聚焦激光束对甲苯进行了光电离。在直径为几毫米的焦点体积中,已实现了优于4μm的空间分辨率。我们的结果对于将SMI应用于激光束的表征,多个粒子或光束的重叠控制以及绝对碰撞截面的确定将是有用的。

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