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Conceptual Designs of Dipole Magnet for Muon Collider Storage Ring

机译:Muon对撞机存储环的偶极磁体的概念设计

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Conceptual designs of a superconducting dipole magnet for a storage ring of a muon collider with a 1.5 TeV center of mass (c.o.m.) energy and an average luminosity of $10^{34} {rm cm}^{-2}{rm s}^{-1}$ are presented. In contrast to proton machines, the dipoles for the muon collider should be able to handle $sim$0.5 kW/m of dynamic heat load from the muon beam decays. The magnets are based on ${rm Nb}_{3}{rm Sn}$ superconductor and designed to provide an operating field of 10 T in the 20-mm aperture with the critical current margin required for reliable machine operation. The magnet cross-sections were optimized to achieve the best possible field quality in the aperture occupied by beams. The developed mechanical structures provide adequate coil prestress and support at the maximum level of Lorentz forces in the coil. Magnet parameters are reported and compared with the requirements.
机译:具有1.5 TeV质心(com)能量和平均发光度为$ 10 ^ {34} {rm cm} ^ {-2} {rm s} ^的μ子对撞机储能环的超导偶极磁体的概念设计。出现{-1} $。与质子机器相反,μ子对撞机的偶极子应该能够处理sim $ 0.5 kW / m的μ子束衰减而产生的动态热负荷。磁体基于$ {rm Nb} _ {3} {rm Sn} $超导体,旨在在20 mm的孔径中提供10 T的工作磁场,并具有可靠的机器运行所需的临界电流裕量。对磁体的横截面进行了优化,以在光束占据的孔径中获得最佳的磁场质量。发达的机械结构可在线圈中的最大洛伦兹力下提供足够的线圈预应力和支撑。报告磁铁参数并将其与要求进行比较。

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