Analysis of velocity-mapped ion images from high-resolution crossed-beam scattering experiments: a tutorial review.

IF 1 Q4 INSTRUMENTS & INSTRUMENTATION EPJ Techniques and Instrumentation Pub Date : 2015-01-01 Epub Date: 2015-07-28 DOI:10.1140/epjti/s40485-015-0020-z
Alexander von Zastrow, Jolijn Onvlee, David H Parker, Sebastiaan Y T van de Meerakker
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引用次数: 8

Abstract

A Stark decelerator produces beams of molecules with high quantum state purity, and small spatial, temporal and velocity spreads. These tamed molecular beams are ideally suited for high-resolution crossed beam scattering experiments. When velocity map imaging is used, the Stark decelerator allows the measurement of scattering images with unprecedented radial sharpness and angular resolution. Differential cross sections must be extracted from these high-resolution images with extreme care, however. Common image analysis techniques that are used throughout in crossed beam experiments can result in systematic errors, in particular in the determination of collision energy, and the allocation of scattering angles to observed peaks in the angular scattering distribution. Using a high-resolution data set on inelastic collisions of velocity-controlled NO radicals with Ne atoms, we describe the challenges met by the high resolution, and present methods to mitigate or overcome them. PACS Codes: 34.50.-s; 37.10.Mn.

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高分辨率交叉光束散射实验中速度映射离子图像的分析:教程综述。
斯塔克减速机产生具有高量子态纯度的分子束,并且具有较小的空间、时间和速度扩散。这些驯服的分子束是高分辨率交叉束散射实验的理想选择。当使用速度图成像时,Stark减速器允许以前所未有的径向清晰度和角分辨率测量散射图像。然而,从这些高分辨率图像中提取微分截面必须非常小心。交叉波束实验中常用的图像分析技术会导致系统误差,特别是在碰撞能量的确定和散射角对角散射分布中观测峰的分配方面。利用速度控制NO自由基与Ne原子的非弹性碰撞的高分辨率数据集,我们描述了高分辨率所遇到的挑战,并提出了减轻或克服这些挑战的方法。PACS代码:34.50 -s;37.10.Mn。
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EPJ Techniques and Instrumentation
EPJ Techniques and Instrumentation INSTRUMENTS & INSTRUMENTATION-
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发文量
11
审稿时长
13 weeks
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