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Comparison between laboratory measurements, simulations, and analytical predictions of the transverse wall impedance at low frequencies

机译:低频下横向壁阻抗的实验室测量,模拟和分析预测之间的比较

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摘要

The prediction of the transverse wall beam impedance at the first unstable betatron line (8 kHz) of the CERN Large Hadron Collider (LHC) is of paramount importance for understanding and controlling the related coupled-bunch instabilities. Until now only novel analytical formulas were available at this frequency. Recently, laboratory measurements and numerical simulations were performed to cross-check the analytical predictions. The experimental results based on the measurement of the variation of a probe coil inductance in the presence of (i) sample graphite plates, (ii) stand-alone LHC collimator jaws, and (iii) a full LHC collimator assembly are presented in detail. The measurement results are compared to both analytical theories and simulations. In addition, the consequences for the understanding of the LHC impedance are discussed.
机译:对CERN大型强子对撞机(LHC)的第一条不稳定的电子加速器线(8 kHz)处的横向壁束阻抗的预测对于理解和控制相关的耦合束不稳定性至关重要。到现在为止,只有新的分析公式可以在此频率下使用。最近,进行了实验室测量和数值模拟以交叉检验分析预测。详细介绍了基于存在(i)样品石墨板,(ii)独立的LHC准直仪夹爪和(iii)完整的LHC准直仪组件的情况下探针线圈电感变化的实验结果。将测量结果与分析理论和模拟进行比较。此外,还讨论了理解LHC阻抗的后果。

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