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NEW EXPERIMENTAL RESULTS WITH OPTICAL DIFFRACTION RADIATION DIAGNOSTICS

机译:光学衍射辐射诊断的新实验结果

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The characterization of the transverse phase space for high charge density and high energy electron beams is demanding for the successful development of the next generation light sources and linear colliders. Due to its non-invasive and non-intercepting features, Optical Diffraction Radiation (ODR) is considered as one of the most promising candidates to measure the transverse beam size and angular divergence. The recent results of our experiment, based on the detection of the ODR angular distribution to measure the electron beam transverse parameters and set up at FLASH (DESY), are presented. A thin stainless steel mask has been installed at 45° with respect to the DR target and normally to the beam propagation to reduce the contribution of synchrotron radiation (SR) background. In addition, interference between the ODR emitted on the shielding mask in the forward direction and the radiation from the DR target in the backward direction is observed. This is what we call Optical Diffraction Interferome-try (ODRI). The contribution of this interference effect to the ODR angular distribution pattern and, consequently, its impact on the beam transverse parameters is discussed.
机译:高电荷密度和高能电子束的横向相空间的表征是成功开发下一代光源和线性对撞机的要求。由于其非侵入性和非拦截性特征,光学衍射辐射(ODR)被认为是测量横向光束尺寸和角发散的最有希望的候选者之一。根据检测ODR角分布以测量电子束横向参数并设置为FLASH(DESY),我们提出了最近的实验结果。相对于DR目标和垂直于光束传播,已安装了45°的薄不锈钢面罩,以减少同步辐射(SR)背景的影响。另外,观察到在向前方向上在屏蔽掩模上发射的ODR与在后方向上来自DR目标的辐射之间的干扰。这就是我们所说的光学衍射干涉仪(ODRI)。讨论了该干涉效应对ODR角分布图的贡献,并因此讨论了其对光束横向参数的影响。

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