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Challenges for magnetic design of a compact booster fed by single power supply

机译:单电源供给紧凑型助推器磁性设计挑战

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In design of full energy Booster injectors, commonly used in the modern accelerator facilities, there is a tendency of avoiding saturation of the magnetic elements in order to avoid losses associated with tune change during the energy ramp. Typical maximum field in the bending magnets of the modern Booster projects of 1.0-1.4 T results in the large circumference. For 0.27-1.2 GeV full energy Booster injector for the Duke FEL storage ring, recently under design and fabrication, there was an ultimate goal to fit it into existing storage ring room to avoid cost extensive building construction. Therefore, the Booster ring has to be compact, therefore the maximum field in the bending magnets was accepted 1.76 T. With a different level of saturation in the bending magnets, focusing and defocusing quadruples it was not possible to avoid a tune change with the energy rise. However, the ratio of saturation levels for the elements was optimized to avoid crossing of any significant resonance while ramping through the entire energy range. The lattice was simulated for different energies based on the results of 3D calculations of the magnetic elements with the use of MERMAID 3D code. Another challenging part of the design was supplying all the dipoles and quadrupoles by single power supply.
机译:在常用于现代加速器设施中的完整能量升压器的设计中,存在避免磁性元件饱和的趋势,以避免在能量斜坡期间与调谐变化相关的损失。现代助推器项目的弯曲磁铁中的典型最大场导致大的圆周。对于0.27-1.2 GEV全能量助力器注射器,用于公爵储存戒指,最近在设计和制造下,有一个最终的目标,可以将其装配到现有的存储环空间中以避免成本广泛的建筑施工。因此,助力环必须紧凑,因此弯曲磁体中的最大场被接受1.76 T.在弯曲磁铁中具有不同水平的饱和度,聚焦和散焦四重子是不可能避免与能量的调谐变化上升。然而,优化了元件的饱和水平的比率,以避免在通过整个能量范围升高的同时交叉任何显着的共振。基于使用美人鱼3D代码的3D计算结果,模拟了不同能量的晶格。该设计的另一个具有挑战性的一部分是通过单电源供应所有偶极子和四倍。

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