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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Generation of quasi continuous-wave electron beams in an L-band normal conducting pulsed RF injector for laboratory astrophysics experiments
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Generation of quasi continuous-wave electron beams in an L-band normal conducting pulsed RF injector for laboratory astrophysics experiments

机译:用于实验室天体物理实验的L波段法向传导脉冲RF注入器中产生准连续波电子束

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摘要

We report on an approach to produce quasi continuous-wave (cw) electron beams with an average beam current of milliamperes and a mean beam energy of a few MeV in a pulsed RF injector. Potential applications are in the planned laboratory astrophysics programs at DESY. The beam generation is based on field emission from a specially designed metallic field emitter. A quasi cw beam profile is formed over subsequent RF cycles at the resonance frequency of the gun cavity. This is realized by debunching in a cut disk structure accelerating cavity (booster) downstream of the gun. The peak and average beam currents can be tuned in beam dynamics simulations by adjusting operation conditions of the booster cavity. Optimization of the transverse beam size at specific positions (e.g., entrance of the plasma experiment) is performed by applying magnetic focusing fields provided by solenoids along the beam line. In this paper, the design of a microtip field emitter is introduced and characterized in electromagnetic field simulations in the gun cavity. A series of particle tracking simulations are conducted for multi-parametric optimization of the parameters of the produced quasi cw electron beams. The obtained results will be presented and discussed. In addition, measurements of the parasitic field emission (PFE) current (dark current) in the PITZ gun will be exemplarily shown to distinguish its order of magnitude from the produced beam current by the designed field emitter.
机译:我们报告了一种在脉冲RF注入器中产生平均毫安电流和几MeV平均束能量的准连续波(cw)电子束的方法。潜在的应用在DESY计划中的实验室天体物理学计划中。光束的产生基于特殊设计的金属场发射器的场发射。在随后的RF循环中,在枪腔的共振频率上形成了准连续波光束轮廓。这是通过在切碎的圆盘结构中去泡来加速喷枪下游的腔体(增压器)来实现的。通过调整助力腔的工作条件,可以在束动力学仿真中调整峰值和平均束电流。通过沿束线施加由螺线管提供的磁聚焦场,可以在特定位置(例如,等离子体实验的入口)优化横束尺寸。在本文中,介绍了微尖端场发射器的设计,并在枪腔中的电磁场模拟中对其进行了表征。进行了一系列粒子跟踪模拟,以对所产生的准连续电子束的参数进行多参数优化。将介绍和讨论所获得的结果。另外,将示例性地示出对PITZ喷枪中的寄生场发射(PFE)电流(暗电流)的测量,以将其量级与设计场发射器产生的束流区分开。

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