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Development of superconducting magnet systems for HIF experiments

机译:用于HIF实验的超导磁体系统的开发

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摘要

The U.S. Heavy Ion Fusion program is developing superconducting focusing quadrupoles for near-term experiments and future driver accelerators. Following the fabrication and testing of several models, a baseline quadrupole design was selected and further optimized. The first prototype of the optimized design has achieved a conductor-limited gradient of 132 T/m in a 70mm bore, with measured field harmonics within 10 parts in 10~4. In parallel, a compact focusing doublet was fabricated and tested using two of the first-generation quadrupoles. After assembly in the cryostat, both magnets reached their conductor-limited quench current. Further optimization steps are currently underway to improve the performance of the magnet system and reduce its cost. They include the fabrication and test of a new prototype quadrupole with reduced field errors as well as improvements of the cryostat design for the focusing doublet. The prototype focusing units will be installed in the HCX beamline at LBNL, to perform accelerator physics experiments and gain operational experience. Successful results in the present phase will make superconducting magnets a viable option for the next generation of integrated beam experiments.
机译:美国重离子融合计划正在开发超导聚焦四极杆,用于近期实验和未来的驾驶员加速器。在制造和测试了几种模型之后,选择了基线四极设计并进一步优化。优化设计的第一个原型在一个70mm的孔中实现了132 T / m的导体极限梯度,在10到4的10个部分内测量了磁场谐波。平行地,使用两个第一代四极杆制造并测试了紧凑的聚焦对偶。在低温恒温器中组装后,两个磁体都达到了其导体限制的失超电流。当前正在进行进一步的优化步骤,以改善磁体系统的性能并降低其成本。它们包括制造和测试具有降低的场误差的新四极原型,以及改进了用于聚焦双合透镜的低温恒温器设计。原型聚焦装置将安装在LBNL的HCX光束线中,以进行加速器物理实验并获得操作经验。本阶段的成功结果将使超导磁体成为下一代集成束实验的可行选择。

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