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Measured and simulated heavy-ion beam loss patterns at the CERN Large Hadron Collider

机译:在CERN大型强子对撞机上测量和模拟的重离子束损耗图

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The Large Hadron Collider (LHC) at CERN pushes forward to new regimes in terms of beam energy and intensity. In view of the combination of very energetic and intense beams together with sensitive machine components, in particular the superconducting magnets, the LHC is equipped with a collimation system to provide protection and intercept uncontrolled beam losses. Beam losses could cause a superconducting magnet to quench, or in the worst case, damage the hardware. The collimation system, which is optimized to provide a good protection with proton beams, has shown a cleaning efficiency with heavy-ion beams which is worse by up to two orders of magnitude. The reason for this reduced cleaning efficiency is the fragmentation of heavy-ion beams into isotopes with a different mass to charge ratios because of the interaction with the collimator material. In order to ensure sufficient collimation performance in future ion runs, a detailed theoretical understanding of ion collimation is needed. The simulation of heavy-ion collimation must include processes in which ~(208)pt~(82+) ions fragment into dozens of new isotopes. The ions and their fragments must be tracked inside the magnetic lattice of the LHC to determine their loss positions. This paper gives an overview of physical processes important for the description of heavy-ion loss patterns. Loss maps simulated by means of the two tools ICOSIM and the newly developed STIER (SixTrack with Ion-Equivalent Rigidities) are compared with experimental data measured during LHC operation. The comparison shows that the tool STIER is in better agreement.
机译:欧洲核子研究中心的大型强子对撞机(LHC)在光束能量和强度方面推进了新的研究领域。鉴于高能光束和强烈光束与敏感的机器组件(特别是超导磁体)的结合,LHC配备了准直系统,以提供保护并拦截不受控制的光束损失。光束损耗可能会导致超导磁体淬火,或者在最坏的情况下会损坏硬件。经过优化以对质子束提供良好保护的准直系统显示出对重离子束的清洁效率差了两个数量级。清洁效率降低的原因是重离子束由于与准直器材料的相互作用而分裂为质荷比不同的同位素。为了确保将来的离子运行具有足够的准直性能,需要对离子准直进行详细的理论了解。重离子准直的模拟必须包括〜(208)pt〜(82+)离子分裂成数十个新同位素的过程。必须在LHC的磁性晶格内跟踪离子及其碎片,以确定其损失位置。本文概述了对重离子损失模式的描述非常重要的物理过程。将通过两种工具ICOSIM和新开发的STIER(具有离子当量刚度的SixTrack)模拟的损耗图与在LHC操作期间测得的实验数据进行了比较。比较表明,工具STIER具有更好的一致性。

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