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首页> 外文期刊>IEEE Transactions on Magnetics >Magnetic design of trim excitations for the Advanced Light Source storage ring sextupole
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Magnetic design of trim excitations for the Advanced Light Source storage ring sextupole

机译:先进光源存储环六极杆的微调激励的磁性设计

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摘要

The Advanced Light Source (ALS) storage ring sextupole is a unique multi-purpose magnet. It is designed to operate as a sextupole with three auxiliary trim modes: horizontal steering, vertical steering, and skew quadrupole. A perturbation theory for iron-dominated magnets developed by Klaus Halbach (1969) provides the basis for this design. The three trim excitations are produced by violating sextupole symmetry and are thus perturbations of the normal sextupole excitation. The magnet was designed such that all four modes are decoupled and can be excited independently. This paper discusses the use of Halbach's perturbation theory to design the trim functions and to evaluate the primary asymmetry in the sextupole mode, namely, a gap in the return yoke to accommodate the vacuum chamber.
机译:高级光源(ALS)储存环六极是一种独特的多功能磁铁。它设计为具有六种辅助修整模式的六极杆:水平转向,垂直转向和倾斜四极杆。克劳斯·哈尔巴赫(Klaus Halbach)(1969)提出的铁为主的磁体的摄动理论为该设计提供了基础。三种修整激励是通过破坏六极对称而产生的,因此是正常六极激励的扰动。磁铁的设计使所有四个模式都解耦并且可以独立激励。本文讨论了使用Halbach摄动理论设计修整函数并评估六极杆模式下的主要不对称性,即返回轭中用于容纳真空室的间隙。

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