首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Ultrarelativistic electron beam spatial size estimation from angular distribution emission in thin crystals
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Ultrarelativistic electron beam spatial size estimation from angular distribution emission in thin crystals

机译:从薄晶体的角度分布发射估计超相对论电子束空间大小

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The use of ultrarelativistic electron (positron) emission in thin crystals to estimate particle beam spatial sizes for projected electron-positron colliders is proposed. The existing position-sensitive X-ray range detectors restrict the minimum value of the measured beam size to a level of approximately 10 urn, which is far greater than the planned sizes of collider beams. We propose to estimate the electron (positron) beam divergence over the diffracted transition radiation from angular distribution measurements. The spatial size can be obtained from the calculated beam emittance or the experimental emit-tance, which is measured during the earlier stage of acceleration using optical transition or optical diffraction radiation. The problem of crystal destruction under the influence of a high-intensity electron beam is discussed. The use of surface parametric X-ray radiation, where the problem of crystal destruction is almost absent, to measure the electron beam parameters is also discussed.
机译:提出了利用薄晶体中的超相对论电子(正电子)发射来估计投射的电子-正电子对撞机的粒子束空间尺寸。现有的位置敏感的X射线范围检测器将测得的光束尺寸的最小值限制在大约10 urn的水平上,这远大于对撞光束的计划尺寸。我们建议根据角度分布测量值估算衍射过渡辐射上的电子(正电子)束发散。可以从计算出的光束发射率或实验发射率获得空间大小,该值是在加速的早期阶段使用光学跃迁或光学衍射辐射测量的。讨论了在高强度电子束的作用下晶体破坏的问题。还讨论了使用几乎不存在晶体破坏问题的表面参量X射线辐射来测量电子束参数的方法。

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