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A concept for canceling the leakage field inside the stored beam chamber of a septum magnet

机译:用于消除隔膜磁体的存储束腔内部泄漏场的概念

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The Advanced Photon Source (APS) is planning to upgrade its storage ring from a double-bend achromat to a multi-bend achromat lattice as part of the APS Upgrade Project (APS-U). A swap-out injection scheme is planned for the APS-U in order to keep the beam current constant and to reduce the dynamic aperture requirements. The injection scheme, combined with the constraints in the booster to storage ring transfer region of the APS-U, results in requiring a septum magnet which deflects the injected 6 GeV electron beam by 89 mrad, while not appreciably disturbing the stored beam. The proposed magnet is straight; however, it is rotated in yaw, roll, and pitch from the stored beam chamber to meet the on-axis swap-out injection requirements for the APS-U lattice. The concept utilizes cancellation of the leakage field inside the 8 mm x 6 mm super-ellipsoidal stored beam chamber. As a result, the horizontal deflection angle of the 6 GeV stored beam is reduced to less than 1μrad with only a 2-mm-thick septum separating the stored beam and the 1.06 T field seen by the injected beam. This design also helps to minimize the integrated skew quadrupole and normal sextupole fields inside the stored beam chamber.
机译:作为APS升级项目(APS-U)的一部分,高级光子源(APS)计划将其存储环从双弯曲消色差透镜升级为多弯曲消色差透镜。为保持APS-U的射束电流恒定并降低动态孔径要求,计划了换出注入方案。注入方案与APS-U的助推器到存储环传输区域中的约束条件相结合,导致需要一个隔片磁体,该磁体将注入的6 GeV电子束偏转89毫拉德,而不会明显干扰存储的束。建议的磁铁是直的;但是,它从存储的光束腔室以偏航,滚动和俯仰旋转,以满足APS-U晶格的轴上换出注射要求。该概念利用了8 mm x 6 mm超椭圆形存储光束室内的泄漏场的抵消。结果,只有2mm厚的隔膜将存储的光束和注入的光束看到的1.06T场分开,将6GeV存储的光束的水平偏转角减小到小于1μrad。这种设计还有助于最小化存储光束室内的积分歪斜四极和正常六极场。

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