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首页> 外文期刊>Physical Review. Accelerators and Beams >Local correction of quadrupole errors at LHC interaction regions using action and phase jump analysis on turn-by-turn beam position data
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Local correction of quadrupole errors at LHC interaction regions using action and phase jump analysis on turn-by-turn beam position data

机译:对转弯波束位置数据进行作用和相位跳跃分析,从而对大型强子对撞机相互作用区域的四极误差进行局部校正

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This article shows that the effect of all quadrupole errors present in an interaction region with low $ensuremath{eta}*$ can be modeled by an equivalent magnetic kick, which can be estimated from action and phase jumps found on beam position data. This equivalent kick is used to find the strengths that certain normal and skew quadrupoles located on the IR must have to make an effective correction in that region. Additionally, averaging techniques to reduce noise on beam position data, which allows precise estimates of equivalent kicks, are presented and mathematically justified. The complete procedure is tested with simulated data obtained from madx and 2015-LHC experimental data. The analyses performed in the experimental data indicate that the strengths of the IR skew quadrupole correctors and normal quadrupole correctors can be estimated within a 10% uncertainty. Finally, the effect of IR corrections in the ${ensuremath{eta}}^{*}$ is studied, and a correction scheme that returns this parameter to its designed value is proposed.
机译:本文表明,可以通过等效的磁踢来模拟在$ ensuremath { beta} * $低的交互区域中存在的所有四极误差的影响,可以根据光束位置数据上的作用和相位跳变来估算。该等效踢用于确定位于IR上的某些法线和偏斜四极杆必须对该区域进行有效校正的强度。另外,提出了减少光束位置数据噪声的平均技术,该技术可以精确估计等效踢,并在数学上证明了其合理性。使用从madx和2015-LHC实验数据获得的模拟数据测试完整程序。在实验数据中进行的分析表明,可以在10%的不确定性范围内估算IR歪斜四极校正器和常规四极校正器的强度。最后,研究了IR校正在$ { ensuremath { beta}} ^ {*} $中的作用,并提出了一种将该参数返回其设计值的校正方案。

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