论文标题
高光度大型强调对撞机的调制调制效果
Tune modulation effects in the High Luminosity Large Hadron Collider
论文作者
论文摘要
几种横向噪声源,例如电源涟漪,有可能充当大型强子对撞机(LHC)亮度产生(LHC)及其未来高光度升级(HL-LHC)的重要限制机制。在存在非线性的情况下,取决于电源噪声的光谱成分和源的性质,这种机制可以通过在晶格非线性驱动的附近的边带共振来增加颗粒在分布中的扩散。对于HL-LHC,由于高光度实验的相互作用点(IP)中的光束大小(IP1和5)的减小,预计内部三重态的四倍体对噪声效应的敏感性会增加。电源波纹可能引起的调制将与曲调调制结合,这些调制本质上是从横向和纵向平面的耦合中出现的,从而通过色素通过色素粒子出现。为此,本文的目的是研究调制效果对四极电源供应涟漪与同步 - 贝特辅助耦合之间相互作用所产生的横向束运动的影响。通过调查不同调制频率和振幅对动态孔径的影响,通过单粒子跟踪模拟估算了可接受性能的电源噪声阈值。通过频率图证明了由于调制引起的侧带共振的激发,并解释了对特定调制频率的较高敏感性。最后,在模拟中考虑了由几种音调组成的电源噪声谱,以确定内部三重态在四倍体中的电源涟漪是否会限制HL-LHC时代的发光度产生。
Several transverse noise sources, such as power supply ripples, can potentially act as an important limiting mechanism for the luminosity production of the Large Hadron Collider (LHC) and its future High-Luminosity upgrade (HL-LHC). In the presence of non-linearities, depending on the spectral components of the power supply noise and the nature of the source, such a mechanism can increase the diffusion of the particles in the distribution through the excitation of sideband resonances in the vicinity of the ones driven by the lattice non-linearities. For the HL-LHC, due to the reduction of the beam size in the Interaction Points (IP) of the high luminosity experiments (IP1 and 5), increased sensitivity to noise effects is anticipated for the quadrupoles of the inner triplets. The modulation that may arise from the power supply ripples will be combined with the tune modulation that intrinsically emerges from the coupling of the transverse and longitudinal plane for off-momentum particles through chromaticity. To this end, the aim of this paper is to study the impact of tune modulation effects on the transverse beam motion resulting from the interplay between quadrupolar power supply ripples and synchro-betatron coupling. A power supply noise threshold for acceptable performance is estimated with single-particle tracking simulations by investigating the impact of different modulation frequencies and amplitudes on the Dynamic Aperture. The excitation of sideband resonances due to the modulation is demonstrated with frequency maps and the higher sensitivity to specific modulation frequencies is explained. Finally, a power supply noise spectrum consisting of several tones is considered in the simulations to determine whether the presence of power supply ripples in the quadrupoles of the inner triplet will limit the luminosity production in the HL-LHC era.