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Feasibility of diffraction radiation for noninvasive beam diagnostics as characterized in a storage ring

机译:如存储环所示,衍射辐射用于非侵入性束诊断的可行性

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In recent years, there has been an increasing demand for noninvasive beam size monitoring on particle accelerators. Ideally, these monitors should be cost effective and require little or no maintenance. These monitors should also be suitable for both linear and circular machines. Here, the experimental setup is described in detail, and the results from a diffraction radiation beam size monitor are presented. This monitor has been tested on the Cornell Electron Storage Ring using a 1 mA ($1.6ifmmodeimeselseexttimesi{}{10}^{10}$ particles per bunch) single bunch electron beam at 2.1 GeV energy. Images of the target surface and the angular distribution of the emitted diffraction radiation were acquired at wavelengths of 400 and 600 nm. These measurements are compared to two analytical models.
机译:近年来,对粒子加速器上的非侵入性光束尺寸监控的需求不断增长。理想情况下,这些监视器应具有成本效益,并且几乎不需要维护。这些监视器也应同时适用于线性和圆形机器。在此,将详细介绍实验装置,并提供衍射辐射束大小监控器的结果。此监视器已在康奈尔电子存储环上使用2.1 mA能量的1 mA单束电子束($ 1.6 ifmmode times else texttimes fi {} {10} ^ {10} $粒子)进行了测试。在400和600nm的波长下获取目标表面的图像和所发射的衍射辐射的角度分布。将这些测量结果与两个分析模型进行比较。

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