论文标题

使用静电电子冷却器的脉冲光束证明电子冷却

Demonstration of electron cooling using a pulsed beam from an electrostatic electron cooler

论文作者

Bruker, M. W., Benson, S., Hutton, A., Jordan, K., Powers, T., Rimmer, R., Satogata, T., Sy, A., Wang, H., Wang, S., Zhang, H., Zhang, Y., Ma, F., Li, J., Ma, X. M., Mao, L. J., Sha, X. P., Tang, M. T., Yang, J. C., Yang, X. D., Zhao, H., Zhao, H. W.

论文摘要

在下一代的强子存储环中,用于交付前所未有的性能,强体光束的冷却至关重要。这样的应用是目前在美国开发的电子离子对撞机。开发电子冷却器以比以前获得的要高得多的能量运行的愿望需要使用射频(RF)字段来加速,而不是传统的静电方法。尽管电子冷却是利用直流梁的低能技术的成熟技术,但射频加速度需要束冷光束,从而将参数空间扩展到未开发的领域。重要的是要实验证明用电子束冷却的可行性,并进一步研究两个梁的相对时间结构如何影响冷却特性。因此,杰斐逊实验室和现代物理研究所(IMP)进行了一组四个脉冲梁冷却实验。 这些实验首次在纵向和横向方向上成功证明了用电子束束进行冷却。我们已经测量了电子束长度和纵向离子对焦强度对纵向和横向离子束轮廓的时间演化的影响,并证明,如果可以准确地保持同步,则动态不会受到时间结构变化的不利影响。

Cooling of hadron beams is critically important in the next generation of hadron storage rings for delivery of unprecedented performance. One such application is the electron-ion collider presently under development in the US. The desire to develop electron coolers for operation at much higher energies than previously achieved necessitates the use of radio-frequency (RF) fields for acceleration as opposed to the conventional, electrostatic approach. While electron cooling is a mature technology at low energy utilizing a DC beam, RF acceleration requires the cooling beam to be bunched, thus extending the parameter space to an unexplored territory. It is important to experimentally demonstrate the feasibility of cooling with electron bunches and further investigate how the relative time structure of the two beams affects the cooling properties; thus, a set of four pulsed-beam cooling experiments was carried out by a collaboration of Jefferson Lab and Institute of Modern Physics (IMP). The experiments have successfully demonstrated cooling with a beam of electron bunches in both the longitudinal and transverse directions for the first time. We have measured the effect of the electron bunch length and longitudinal ion focusing strength on the temporal evolution of the longitudinal and transverse ion beam profile and demonstrate that if the synchronization can be accurately maintained, the dynamics are not adversely affected by the change in time structure.

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