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Magnetic cross-talk simulation between Q2 and L-bend magnets of APS-U

机译:APS-U的Q2和L弯磁铁之间的磁串扰模拟

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摘要

The Advanced Photon Source Upgrade project (APS-U) will replace the present storage ring of the Advanced Photon Source (APS) with a new storage ring based on a multi-bend achromat (MBA) lattice. Due to the increased number of magnets in each sector of the MBA lattice, the space between magnets is very limited, with the smallest separation between magnets being only 5 cm between the Q2 quadrupole in the doublet section and the adjacent M1 longitudinal gradient dipole (L-bend). Cross-talk between these magnets is of concern and is investigated in this work. Both magnets are modeled separately in Opera-3D, and then together as per their design layout in the MBA lattice. The trajectory of a 6.0 GeV electron beam through both magnets is calculated, the local field multipoles along that trajectory computed, and the integrated harmonics compared with a superposition of the fields in the individual magnets. These simulations show that the integrated quadrupole field of the Q2 magnet drops by 0.16% due to the presence of the M1, while the integrated dipole field of the M1 is practically unaffected. The effect on the higher-order multipoles at a radius of 10 mm was less than 0.01% of the integrated dipole field, and is within acceptable limits. The detailed magnetic structures of the Q2 and the M1, electron beam trajectory through these magnets, the local main and harmonic fields along the trajectory, and their integrals with and without cross-talk are reported.
机译:高级光子源升级项目(APS-U)将用基于多弯消色差(MBA)晶格的新存储环替换现有的高级光子源(APS)的存储环。由于MBA晶格的每个扇区中磁体的数量增加,磁体之间的空间非常有限,磁体之间的最小间距只有在双峰态的Q2四极杆和相邻的M1纵向梯度偶极(L)之间只有5 cm -弯曲)。这些磁体之间的串扰是值得关注的,并在这项工作中进行了研究。两种磁体均在Opera-3D中分别建模,然后按照其在MBA晶格中的设计布局进行建模。计算了穿过两个磁体的6.0 GeV电子束的轨迹,计算了沿该轨迹的局部场多极子,并将积分谐波与各个磁体中的场叠加进行了比较。这些模拟表明,由于M1的存在,Q2磁体的积分四极场下降了0.16%,而M1的积分偶极场实际上不受影响。半径为10 mm的高阶多极子的影响小于积分偶极子场的0.01%,并且在可接受的范围内。报告了Q2和M1的详细磁性结构,通过这些磁体的电子束轨迹,沿该轨迹的局部主场和谐波场以及它们在有无串扰的情况下的积分。

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