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引用次数: 0
摘要
纵向电子束诊断在 X 射线自由电子激光器的运行和控制中起着至关重要的作用,这些激光器依赖于电流曲线、纵向相空间或粒子分布的切片发射率等参数。一方面,这些设施产生的飞秒尺度的电子束对诊断所能达到的分辨率提出了严格的要求。另一方面,新型加速器技术(如束流驱动等离子辐照加速器(PWFA))的研发需要前所未有的能力来分辨沿纵向束坐标全横向平面的中心偏移。我们介绍了基于波束的先进 X 波段横向偏转射频结构(TDS)系统的调试情况,该系统具有提供可变偏转力极化的新功能:PolariX-TDS。通过对原型进行全面测量,验证了系统射频性能的关键参数,并以 3.3 fs 的时间分辨率完成了电子束的相空间特性分析。此外,还分析了电子束通过 PolariX-TDS 时产生的二阶效应。
Beam-based commissioning of a novelX-band transverse deflection structure with variable polarization
Longitudinal electron-beam diagnostics play a critical role in the operation and control of x-ray free-electron lasers, which rely on parameters such as the current profile, the longitudinal phase space, or the slice emittance of the particle distribution. On the one hand, the femtosecond-scale electron bunches produced at these facilities impose stringent requirements on the resolution achievable with the diagnostics. On the other, research and development of novel accelerator technologies such as beam-driven plasma-wakefield accelerators (PWFA) demand unprecedented capabilities to resolve the centroid offsets in the full transverse plane along the longitudinal bunch coordinate. We present the beam-based commissioning of an advanced -band transverse-deflection rf structure (TDS) system with the new feature of providing variable polarization of the deflecting force: the PolariX-TDS. By means of a comprehensive campaign of measurements conducted with the prototype, key parameters of the rf performance of the system are validated and a phase-space characterization of an electron bunch is accomplished with a time resolution of 3.3 fs. Furthermore, an analysis of second-order effects induced on the bunch from its passage through the PolariX-TDS is presented.
期刊介绍:
Physical Review Special Topics - Accelerators and Beams (PRST-AB) is a peer-reviewed, purely electronic journal, distributed without charge to readers and funded by sponsors from national and international laboratories and other partners. The articles are published by the American Physical Society under the terms of the Creative Commons Attribution 3.0 License.
It covers the full range of accelerator science and technology; subsystem and component technologies; beam dynamics; accelerator applications; and design, operation, and improvement of accelerators used in science and industry. This includes accelerators for high-energy and nuclear physics, synchrotron-radiation production, spallation neutron sources, medical therapy, and intense-beam applications.