冷却反质子束在回收器中的不稳定性

A. Burov, V. Lebedev
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引用次数: 2

摘要

光束冷却得越多,就越不稳定。在3.3公里的回收环中,堆叠的8gev反质子被随机(横向)和电子(3D)冷却。由于机器处于耦合共振附近,因此应使用耦合光学函数进行稳定性分析。为了稳定梁抵抗阻力壁的不稳定性,使用了数字阻尼器。数字阻尼器可以被描述为具有显式时间依赖性的线性算子,这与模拟阻尼器在原理上有所不同。给出了数字阻尼器的理论描述。电子冷却使得冷却后的电子束与电子束的双束不稳定性成为可能。描述了这种不稳定性的特点,并讨论了补救措施。
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Instabilities of cooled antiproton beam in recycler
The more beam is cooled, the less stable it is. In the 3.3 km Recycler Ring, stacked 8 GeV antiprotons are cooled both with stochastic (transversely) and electron (3D) cooling. Since the machine is staying near the coupling resonance, coupled optical functions should be used for stability analysis. To stabilize beam against the resistive wall instability, a digital damper is used. Digital dampers can be described as linear operators with explicit time dependence, and that makes a principle difference with analogous dampers. Theoretical description of the digital dampers is presented. Electron cooling makes possible a two-beam instability of the cooled beam with the electron beam. Special features of this instability are described, and the remedy is discussed.
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