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Further development of the sextupole dipole corrector (MSCB) magnet for the LHC

机译:用于大型强子对撞机的六极偶极校正器(MSCB)磁体的进一步开发

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Combined sextupole-dipole corrector magnets (MSCB) will be mounted in each half cell of the new Large Hadron Collider (LHC) being built at CERN. The dipole part, used for particle orbit corrections, will be powered individually and is designed for low current, originally 30 A but now 55 A. The sextupole part, used for chromaticity corrections, is connected via cold busbars in families of 12 or 13 magnets and is powered with 550 A. Several versions of this corrector magnet were tested as model magnets in order to develop the final design for the series. In the first design the coils are nested, with the dipole coil wound around the sextupole coil to obtain as short a magnet as possible, accepting the slight cross-talk between the coils due to persistent currents, and increased saturation effects. The design has evolved and an alternative design, in which the dipole and sextupole coils are separated, is now favored. Tests at 4.5 K and at 1.9 K were conducted to determine the training behavior, the field quality, and the cross-talk between the windings. This paper discusses the results for the different configurations.
机译:将在欧洲核子研究组织(CERN)建造的新型大型强子对撞机(LHC)的每个半电​​池中安装六极-偶极校正磁体组合体(MSCB)。偶极子部分,用于粒子轨道校正,将单独供电,设计用于低电流,最初为30 A,现在为55A。用于色度校正的六极子部分通过冷母线连接,该母线为12或13个磁体系列并由550 A供电。此校正器磁体的多个版本已作为模型磁体进行了测试,以开发该系列的最终设计。在第一种设计中,线圈是嵌套的,偶极线圈缠绕在六极线圈上,以获得尽可能短的磁体,由于持续的电流和饱和效应的增加,线圈之间的串扰很小。该设计已得到发展,现在更喜欢将偶极线圈和六极线圈分开的替代设计。进行了4.5 K和1.9 K的测试,以确定训练行为,磁场质量和绕组之间的串扰。本文讨论了不同配置的结果。

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