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Beam based measurements of field multipoles in the RHIC low beta insertions and extrapolation of the method to the LHC

机译:在RHIC低β插入中基于波束的场多极测量以及将该方法外推到LHC

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The multipolar content of the dipoles and quadrupoles is known to limit the stability of the beam dynamics in superconducting machines like RHIC and even more in LHC. The low-beta quadrupoles are thus equipped with correcting coils up to the dodecapole order. The correction is planned to rely on magnetic measurements. We show that a relatively simple method allows an accurate measurement of the multipolar field aberrations using the beam. The principle is to displace the beam in the non-linear fields by local closed orbit bumps and to measure the variation of sensitive beam observables. The resolution and robustness of the method are found appropriate. Experimentation at RHIC showed clearly the presence of normal and skew sextupolar field components in addition to a skew quadrupolar component in the interaction regions. Higher-order components up to decapole order appear as well.
机译:众所周知,偶极子和四极子的多极含量会限制诸如RHIC之类的超导机器中束流动力学的稳定性,甚至在LHC中也会限制束流动力学的稳定性。因此,低β四极杆配备了高达十二极级的校正线圈。该校正计划依赖于磁测量。我们表明,相对简单的方法可以使用光束精确测量多极场像差。原理是通过局部闭合的轨道颠簸在非线性场中移动光束,并测量敏感光束可观测值的变化。发现该方法的分辨率和鲁棒性是适当的。在RHIC上的实验清楚地表明,相互作用区域中除了正四极分量外,还存在正常和正六极场分量。直到十阶的高阶分量也会出现。

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