论文标题

质子光束的电子冷却实验,具有IOTA中强烈空间电荷的质子光束

Electron Cooling Experiment for Proton Beams with Intense Space-charge in IOTA

论文作者

Banerjee, N., Bossard, M. K., Brandt, J., Kim, Y-K., Cathey, B., Nagaitsev, S., Stancari, G.

论文摘要

电子冷却作为产生强烈离子梁的方法,当涉及在实践中可以实现的离​​子束的峰值相空间密度时,具有实用的上限。我们描述了一个新的实验,该实验使用可集成的光学测试加速器(IOTA)研究2.5 MeV质子的电子冷却,该实验是一个用于Fermilab的光束物理研究的存储环。该系统将使质子束的磁化电子冷却能够研究,其横向不连贯的曲调偏移接近-0.5,这是由于存在强烈的空间充电力而接近-0.5。我们介绍了为该项目计划的硬件设计,模拟和特定实验的概述。

Electron cooling as a method of creating intense ion beams has a practical upper limit when it comes to the peak phase space density of ion beams which can be achieved in practice. We describe a new experiment to study electron cooling of 2.5 MeV protons at the intensity limit using the Integrable Optics Test Accelerator (IOTA), which is a storage ring dedicated to beam physics research at Fermilab. This system will enable the study of magnetized electron cooling of a proton beam with transverse incoherent tune shifts approaching -0.5 due to the presence of intense space-charge forces. We present an overview of the hardware design, simulations and specific experiments planned for this project.

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