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Effects of space charge in a compact superconducting energy recovery linac with a low energy

机译:低能量的紧凑型超导能量回收直线加速器中空间电荷的影响

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The Energy Recovery Linac (ERL) is one of the candidates for the next generation light sources, which is based on the 1.3 GHz superconducting radio frequency (SRF) linear accelerator. The ERL can produce high brilliance synchrotron radiation and a short pulse beam. We investigated the beam dynamics in the compact-Energy Recovery Linac (c-ERL) with a beam energy of 35 MeV, which is a prototype of the 5 GeV ERL at KEK. One of the main goals of our studies on the c-ERL is the emittance compensation in the merger section to achieve an emittance smaller than 1.0 mm mrad. In the case of the early commissioning phase, the injector system produces electron bunches of 5 MeV with a repetition rate of 1.3 GHz. The compensation of the emittance growth due to the space charge effect was investigated in order to achieve a small emittance at the exit of the merger. We discuss the results of a method to compensate the emittance growth which is based on beam envelope matching between the betatron function and the linear dispersion induced by the space charge force. We investigated the space charge effect when the beam energy in the superconducting RF section was changed. The effect of space charge in the arc section was also investigated. It is shown that the space charge effect in the c-ERL is an important source of distortion of the optics function. In this paper, we show the results on the analysis of the effect of space charge in the compact-ERL at KEK which has a low-energy beam.
机译:能量回收直线加速器(ERL)是下一代光源的候选者之一,它基于1.3 GHz超导射频(SRF)线性加速器。 ERL可以产生高亮度同步加速器辐射和短脉冲束。我们研究了束能量为35 MeV的紧凑型能量回收直线加速器(c-ERL)的束动力学,这是KEK的5 GeV ERL的原型。我们对c-ERL进行研究的主要目标之一是合并部分中的发射率补偿,以实现小于1.0 mm mrad的发射率。在早期调试阶段,喷射器系统产生5 MeV的电子束,重复频率为1.3 GHz。为了在合并的退出时实现小的发射率,研究了由于空间电荷效应对发射率增长的补偿。我们讨论了一种补偿发射率增长的方法的结果,该方法基于电子感应加速器功能与空间电荷力引起的线性色散之间的光束包络匹配。我们研究了超导射频部分中的束能量改变时的空间电荷效应。还研究了弧形截面中空间电荷的影响。结果表明,c-ERL中的空间电荷效应是光学功能畸变的重要来源。在本文中,我们展示了分析具有低能束的KEK紧凑型ERL中的空间电荷效应的结果。

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