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Progress with High-Field Superconducting Magnets for High-Energy Colliders

机译:高能对撞机用高场超导磁体的研究进展

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One of the possible next steps for high-energy physics research relies on a high-energy hadron or muon collider. The energy of a circular collider is limited by the strength of bending dipoles, and its maximum luminosity is determined by the strength of final focus quadrupoles. For this reason, the high-energy physics and accelerator communities have shown much interest in higher-field and higher-gradient superconducting accelerator magnets. The maximum field of NbTi magnets used in all present high-energy machines, including the LHC, is limited to ~10 T at 1.9 K. Fields above 10 T became possible with the use of Nb_3 Sn superconductors. Nb_3Sn accelerator magnets can provide operating fields up to ~15 T and can significantly increase the coil temperature margin. Accelerator magnets with operating fields above 15 T require high-temperature superconductors. This review discusses the status and main results of Nb_3 Sn accelerator magnet research and development and work toward 20-T magnets.
机译:高能物理研究可能采取的下一步措施之一是依靠高能强子或μ子对撞机。圆形对撞机的能量受到弯曲偶极子强度的限制,其最大发光度取决于最终聚焦四极子的强度。因此,高能物理学家和加速器界对高场和梯度更高的超导加速器磁体表现出了极大的兴趣。在所有现有的高能电机(包括LHC)中使用的NbTi磁体的最大磁场在1.9 K时限制为〜10T。通过使用Nb_3 Sn超导体,可以使10 T以上的磁场成为可能。 Nb_3Sn加速器磁铁可提供高达〜15 T的工作磁场,并可显着提高线圈温度裕度。工作磁场高于15 T的加速器磁铁需要高温超导体。这篇综述讨论了Nb_3 Sn加速器磁体的研究现状和主要成果,并致力于20-T磁体。

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