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Off-momentum cleaning simulations and measurements at the Large Hadron Collider

机译:大型Hadron Collier的缺点清洁模拟和测量

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The Large Hadron Collider is designed to collide proton beams with unprecedented energy in order to extend the frontiers of high-energy physics. Particles that have an energy different from the nominal one follow dispersive orbits and, if the energy offset is large enough, could be lost on the cold aperture and cause quenches of superconducting magnets. Therefore, particles with large energy offsets must be removed from the beam by the collimation system. Although the dynamics of such particles is well understood and the efficiency of the momentum cleaning is evaluated in measurements, in the past, there were not general simulations tools available for predicting the efficiency of the collimation system in scenarios where off-momentum particles are involved. In this paper we present a new set of tools to simulate off-momentum losses, the benchmarking of these tools with measurements and the evaluation of off-momentum losses in the future LHC upgrade, the HL-LHC. These new simulation tools are applied for simulating two of the main scenarios where off-momentum particles play an important role in the LHC: particles lost at the start of the energy ramp and simulations of the momentum cleaning at 6.5 TeV energy. In this study, the collimation process during dynamic changes in the machine is simulated, as opposed to previous studies in static conditions. This is the first time that this sort of comparison between different simulation methods and measurements is performed. The results are used to provide a better understanding the dynamics of such particles and, finally, these tools are used to estimate the influence of off-momentum losses in the future High-Luminosity LHC.
机译:大型强子撞机旨在与前所未有的能量碰撞质子梁,以延长高能物理的前沿。具有不同于标称的颗粒的颗粒遵循分散轨道,并且如果能量偏移足够大,则可能在冷光圈上丢失并导致超导磁体的淬火。因此,必须通过准直系统从光束中除去具有大的能量偏移的颗粒。尽管这种颗粒的动态被很好地理解,并且在过去的测量中评估了动量清洁的效率,但是没有可用于预测涉及的场景中的准直系统的效率的一般模拟工具。在本文中,我们展示了一套新的工具来模拟势头损失,这些工具的基准测试与未来的LHC升级中的测量和对势头损失的评估,HL-LHC。这些新的仿真工具用于模拟其中的两个主要情景,其中脱离动量粒子在LHC中发挥着重要作用:在能量坡道开始时丢失的粒子和6.5 TEV能量的动量清洁的模拟。在这项研究中,模拟了机器动态变化期间的准直过程,而不是先前的静态条件研究。这是第一次执行不同仿真方法和测量之间的这种比较。结果用于提供这种颗粒的动态,并且最后,这些工具用于估计未来高亮度LHC中的偏移损失的影响。

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