论文标题
50 Hz谐波对大型强子对撞机的光束演变的影响
Impact of the 50 Hz harmonics on the beam evolution of the Large Hadron Collider
论文作者
论文摘要
自从偶极激发的形式开始运行以来,在大型强子对撞机(LHC)的横向梁光谱中系统地观察到电源频率的谐波(50 Hz)。在存在强大的非线性(例如梁梁相互作用)的情况下,这些电源供应涟漪色调都存在于Betatron曲调附近,它们可以增加颗粒在分布中的调子扩散,从而导致质子损失,并最终导致梁寿命的显着降低。本文的目的是确定50〜Hz谐波是否对LHC的光束性能有影响。加速器操作中存在的涟漪光谱的定量表征以及对其来源的理解是评估50〜Hz谐波对LHC未来升级的影响,高光度LHC(HL-LHC)的影响。为此,采用了带有单粒子跟踪代码的模拟,包括从实验观察结果中提取的逼真的波纹光谱,以量化此类效应在调子扩散,动态孔径和光束寿命方面的影响。在本文中报告和讨论了跟踪研究的方法和结果。
Harmonics of the mains frequency (50 Hz) have been systematically observed in the transverse beam spectrum of the Large Hadron Collider (LHC) since the start of its operation in the form of dipolar excitations. In the presence of strong non-linearities such as beam-beam interactions, as many of these power supply ripple tones reside in the vicinity of the betatron tune they can increase the tune diffusion of the particles in the distribution, leading to proton losses and eventually to a significant reduction of the beam lifetime. The aim of this paper is to determine whether the 50~Hz harmonics have an impact on the beam performance of the LHC. A quantitative characterization of the ripple spectrum present in the operation of the accelerator, together with an understanding of its source is an essential ingredient to also evaluate the impact of the 50~Hz harmonics on the future upgrade of the LHC, the High Luminosity LHC (HL-LHC). To this end, simulations with the single-particle tracking code, SixTrack, are employed including a realistic ripple spectrum as extracted from experimental observations to quantify the impact of such effects in terms of tune diffusion, Dynamic Aperture and beam lifetime. The methods and results of the tracking studies are reported and discussed in this paper.