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Longitudinal Gradient Bend Magnets for the Upgrade of the Swiss Light Source Storage Ring

机译:纵向梯度弯曲磁铁,用于升级瑞士光源存储环

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The photon beam brightness of synchrotron light facilities is increased by reducing the beam emittance. For the upgrade of the storage ring of the Swiss Light Source (SLS2), the lattice achieving a low emittance foresees longitudinal gradient bending (LGB) magnets producing high peak field values and quasi-hyperbolic field profiles to minimize emittance at locations of radiation. Two types of technologies are studied: a 1.4 T peak field magnet based on permanent magnet materials (PM-LGB) and a superconducting version (SC-LGB) working at almost 5 T peak, to be upgraded to 6 T in future. The baseline scenario consists in commissioning the SLS2 with 60 PM-LGB assemblies first and exchange at a later stage three PM-LGBs by superconducting ones providing a higher peak field value. Thus, the design must foresee interchangeability. In this paper, we focus on the magnetic and mechanical design aspects of the PM-LGB and on the main mechanical constraints of the SC-LGB.
机译:通过降低光束发射率来增加同步射线设施的光子束亮度。为了升级瑞士光源(SLS2)的存储环,晶格实现了低发射的晶格预示着产生高峰场值和准双曲域轮廓的纵向梯度弯曲(LGB)磁铁,以最大限度地减少辐射位置的粘合率。研究了两种类型的技术:基于永磁材料(PM-LGB)的1.4 T峰磁场磁铁和在几乎5吨峰值的超导版(SC-LGB),将来升级为6T。基线方案包括首先将SLS2与60pm-LGB组件一起调试并通过超导峰值场值的超导级,在稍后的三个PM-LGB中交换。因此,设计必须预见互换性。在本文中,我们专注于PM-LGB的磁性和机械设计方面以及SC-LGB的主要机械约束。

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