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Advanced concepts and methods for very high intensity accelerators

机译:超高强度促进剂的先进概念和方法

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For very high intensity accelerators, not only beam power but also space charge is a concern. Both aspects should be taken into consideration for any analysis of accelerators aiming at comparing their performances and pointing out the challenging sections. As high beam power is an issue from the lowest energy, careful and exhaustive beam loss predictions have to be done. High space charge implies lattice compactness making the implementation of beam diagnostics very problematic, so a clear strategy for beam diagnostic has to be defined. Beam halo is no longer negligible. Its dynamics is different from that of the core and plays a significant role in the particle loss process. Therefore, beam optimization must take the halo into account and beam characterization must be able to describe the halo part in addition to the core one. This paper presents the advanced concepts and methods for beam analysis, beam loss prediction, beam optimization, beam diagnostic, and beam characterization especially dedicated to very high intensity accelerators. Examples of application of these concepts are given in the case of the IFMIF accelerators.
机译:对于非常高强度的加速器,不仅要考虑光束功率,还要考虑空间电荷。旨在比较加速器性能并指出具有挑战性的部分的加速器分析均应考虑到这两个方面。由于高光束功率是最低能量的问题,因此必须进行仔细而详尽的光束损耗预测。高空间电荷意味着晶格紧凑,这使得光束诊断的实施非常困难,因此必须定义一种清晰的光束诊断策略。束晕不再微不足道。它的动力学不同于核的动力学,并且在颗粒损失过程中起着重要作用。因此,光束优化必须考虑光环,光束表征除了核心部分外还必须能够描述光环部分。本文介绍了用于光束分析,光束损耗预测,光束优化,光束诊断和光束表征的高级概念和方法,这些方法和方法专门用于非常高强度的加速器。在IFMIF加速器的情况下,给出了这些概念的应用示例。

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