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A THEORETICAL STUDY OF THE ELECTRON-PROTON INSTABILITY IN A LONG PROTON PULSE

机译:长质脉冲中电子质量不稳定性的理论研究

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The electron-proton instability of a long, intense, and partially neutralized proton bunch is studied by numerically solving the equations of motion for the line centroid of the proton beam and the line centroid of the trapped electrons. The formalism takes into account the effects of variable line densities and alternating-gradient (AG) focusing. Good qualitative agreement between the computational results and experimental observations was obtained when applying the theory to the Los Alamos Proton Storage Ring (PSR). Both the case of a clean extraction gap and the case with a few percent of protons in the extraction gap were studied. It is found that with only a few percent neutralization, the PSR beam can become unstable in both cases. The same equations and method were used to study the stability of the proton beam in the accumulator ring of the proposed LANSCE II spallation-neutron source. The results indicate that the e-p instability can also occur in the LANSCE II accumulator ring for only a few percent neutralization.
机译:通过数值求解用于质子束的线质心的运动方程和被困电子的线质心的运动方程来研究长,强烈和部分中和质子束的电子 - 质子不稳定性。形式主义考虑了可变线密度和交替梯度(AG)聚焦的影响。在将理论应用于LOS Alamos质子储存环(PSR)时,获得了计算结果与实验观察之间的良好定性协议。研究了清洁萃取间隙的情况和萃取间隙中具有少量质子的情况。结果发现,只有百分比中和,PSR光束在这两种情况下都可以变得不稳定。使用相同的等式和方法来研究所提出的Lansce II脱模 - 中子源的蓄能器环中质子梁的稳定性。结果表明,在Lansce II蓄能器环中也可以发生E-P不稳定性,仅为几个百分比中和。

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