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Superconducting Magnet with the Reduced Barrel Yoke for the Hadron Future Circular Collider

机译:用于强子未来圆形对撞机的具有减小的桶形磁轭的超导磁体

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摘要

The conceptual design study of a hadron Future Circular Collider (FCC-hh) with a center-of-mass energy of the order of 100 TeV in a new tunnel of 80-100 km circumference assumes the determination of the basic requirements for its detectors. A superconducting solenoid magnet of 12 m diameter inner bore with the central magnetic flux density of 6 T is proposed for a FCC-hh experimental setup. The coil of 24.518 m long has seven 3.5 m long modules included into one cryostat. The steel yoke with a mass of 21 kt consists of two barrel layers of 0.5 m radial thickness, and 0.7 m thick nose disk, four 0.6 m thick end-cap disks, and three 0.8 m thick muon toroid disks each side. The outer diameter of the yoke is 17.7 m; the length without the forward muon toroids is 33 m. The air gaps between the end-cap disks provide the installation of the muon chambers up to the pseudorapidity of \pm 3.5. The conventional forward muon spectrometer provides the measuring of the muon momenta in the pseudorapidity region from \pm 2.7 to \pm 4.6. The magnet modeled with Cobham's program TOSCA. The total Ampere-turns in the superconducting solenoid coil are 127.25 MA-turns. The stored energy is 43.3 GJ. The axial force onto each end-cap is 480 MN. The stray field at the radius of 50 m off the coil axis is 14.1 mT and 5.4 mT at the radius of 100 m. All other parameters presented and discussed.
机译:对质量为100 TeV量级的质子中心的强子未来圆形对撞机(FCC-hh)在新的80-100 km周长隧道中的概念设计研究假设确定了其探测器的基本要求。对于FCC-hh实验装置,提出了一个内孔直径为12 m的超导螺线管磁体,其中心磁通密度为6T。 24.518 m长的线圈在一个低温恒温器中包含七个3.5 m长的模块。质量为21 kt的钢轭由两个径向厚度为0.5 m的桶形层,一个0.7 m厚的鼻形盘,每个侧面上的四个0.6 m厚的端盖形盘和三个0.8 m厚的μ型环形磁片组成。磁轭的外径为17.7 m;没有前向子磁环的长度为33 m。端盖盘之间的气隙提供了高达pm 3.5的假快速率的μon腔安装。常规前向μ子光谱仪提供了从\ pm 2.7到\ pm 4.6的伪快速区域中的μon矩的测量。磁铁采用Cobham的TOSCA程序建模。超导螺线管线圈的总安匝数为127.25 MA匝。储存的能量为43.3 GJ。施加在每个端盖上的轴向力为480 MN。离线圈轴半径为50 m的杂散场为14.1 mT,半径为100 m的杂散场为5.4 mT。提出并讨论了所有其他参数。

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