Synchrotron radiation dominated hadron colliders

E. Keil
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引用次数: 16

Abstract

The synchrotron radiation damping time becomes small compared to the beam lifetime when the beam energy in a circular hadron collider reaches about 100 TeV and the dipole field about 10 T. This paper discusses an approach to the design of these colliders such that the desired performance parameters, e.g. beam-beam tune shift and luminosity are achieved at the equilibrium values of the beam emittance and momentum spread. The design procedure is described, involving the design of the interaction regions, the arcs, and the RF system. The thresholds and/or growth rates of several collective effects, and the growth times for intra-beam scattering are estimated. The consequences of the synchrotron radiation are discussed in the conclusions.
同步辐射主导了强子对撞机
在环形强子对撞机中,当束流能量达到100tev左右,偶极子场达到10t左右时,同步辐射衰减时间相对束流寿命变小。本文讨论了在束流发射度和动量扩散的平衡值下实现束流调谐位移和光度等性能参数的设计方法。描述了设计过程,包括相互作用区域、电弧和射频系统的设计。估计了几种集体效应的阈值和/或增长率,以及束内散射的增长时间。在结论部分讨论了同步辐射的后果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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