费米实验室电子冷却项目:工程方面的冷却部分

J. Leibfritz, K. Carlson, A. Crawford, A. Makarov, M. McGee, S. Nagaitsev, G. Saewert, F. Saffrahn, A. Shemyakin, A. Warner
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引用次数: 5

摘要

费米实验室的电子冷却项目涉及4.3 MeV, 0.5 a的直流电子束与8.9 GeV/c的反质子在最终回收环中相互作用。这种相互作用通过一个由10个电磁模块组成的20米长的冷却段发生。这一冷却过程将导致支持Run IIb参数所需的Tevatron对撞机光度的增加。该冷却部分有几个重要的工程方面,包括:电磁阀设计,真空系统设计,磁屏蔽,支撑系统和对准方法。与这些领域相关的工程问题的细节将被讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fermilab Electron Cooling project: engineering aspects of cooling section
The Fermilab Electron Cooling project involves interacting a 4.3 MeV, 0.5 A DC electron beam with 8.9 GeV/c antiprotons in the FNAL Recycler Ring. This interaction occurs through a 20-meter long cooling section consisting of 10 solenoid modules. This cooling process would lead to an increase in the Tevatron collider luminosity needed to support the Run IIb parameters. There are several important engineering aspects of this cooling section including: solenoid design, vacuum system design, magnetic shielding, support system, and alignment methods. Details of the engineering issues related to each of these areas will be discussed.
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