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Beam-based alignment of the SuperKEKB linac quadrupoles

机译:SuperKEKB直线加速器四极杆的基于光束的对准

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摘要

The positron linac of SuperKEKB contains accelerating structures surrounded by quadrupoles without nearby beam-position-monitors (BPMs) or steering magnets. In this situation, standard techniques for beam steering or beam-based-alignment are not efficient. We here present a method to determine the magnetic centers of individual SuperKEKB linac quadrupoles. This method is independent of any BPM offsets. The beam position at the quadrupole under study is scanned, and for each position the quadrupole strength is varied, so as to find the location of zero deflection. Unlike other method used in the past, this technique does not rely on any transfer matrices. Interpolation is possible even to quadrupoles without BPM by assigning 'virtual BPMs'. We show that the misalignment of the quadrupoles with BPM in the bore can be determined with an rms error of = 37 mu m; for quadrupoles without proper BPMs the error is sigma = 112 mu m.
机译:SuperKEKB的正电子直线加速器包含被四极包围的加速结构,而没有附近的光束位置监测器(BPM)或转向磁铁。在这种情况下,用于光束控制或基于光束的对准的标准技术效率不高。我们在这里提出一种确定单个SuperKEKB直线加速器四极子磁心的方法。此方法独立于任何BPM偏移量。扫描被研究的四极杆处的光束位置,并针对每个位置改变四极杆强度,以便找到零偏转的位置。与过去使用的其他方法不同,该技术不依赖任何传输矩阵。通过分配“虚拟BPM”,甚至可以在没有BPM的情况下对四极进行插值。我们证明,可以用均方根误差<= 37μm来确定四极杆与孔中BPM的不对准;对于没有适当BPM的四极杆,误差为sigma <= 112微米。

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