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Characterization of laser-driven single and double electron bunches with a permanent magnet quadrupole triplet and pepper-pot mask

机译:激光驱动的单电子束和双电子束的表征与永磁四极三重和胡椒罐面具

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摘要

Electron beams from laser-plasma wakefield accelerators have low transverse emittance, comparable to those from conventional radio frequency accelerators, which highlights their potential for applications, many of which will require the use of quadrupole magnets for optimal electron beam transport. We report on characterizing electron bunches where double bunches are observed under certain conditions. In particular, we present pepper-pot measurements of the transverse emittance of 120–200 MeV laser wakefield electron bunches after propagation through a triplet of permanent quadrupole magnets. It is shown that the normalized emittance at source can be as low as 1 π mm mrad (resolution limited), growing by about five times after propagation through the quadrupoles due to beam energy spread. The inherent energy-dependence of the magnets also enables detection of double electron bunches that could otherwise remain unresolved, providing insight into the self-injection of multiple bunches. The combination of quadrupoles and pepper-pot, in addition, acts as a diagnostic for the alignment of the magnetic triplet.
机译:与传统的射频加速器相比,来自激光等离子尾波加速器的电子束具有较低的横向发射率,这突出了它们的应用潜力,其中许多将需要使用四极磁体来实现最佳的电子束传输。我们报道了在某些条件下观察到双束的电子束的特征。特别是,我们介绍了通过三重永久四极磁体传播后120-200 MeV激光尾场电子束的横向发射的胡椒锅测量。结果表明,归因于源的归一化发射可以低至1πmm mrad(分辨率受限制),由于光束能量的扩散,在通过四极杆传播后,其发射率大约增长了五倍。磁体固有的能量依赖性还可以检测可能无法解析的双电子束,从而深入了解多个电子束的自我注入。此外,四极杆和胡椒锅的组合可作为诊断磁性三线态的方法。

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