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Conceptual design of pion-capture magnets of up to 15 cm bore and 20 T peak field

机译:直径可达15 cm且峰值磁场为20 T的介子捕获磁体的概念设计

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For the Neutrino Factory and Muon Collider Collaboration, BNL has considered solenoidal magnet systems of several types to capture pions generated by bombarding a mercury jet with multi-GeV protons. The magnet systems generate up to 20 T, uniform to 5% throughout a cylindrical volume 0.15 m in diameter and 0.6 m long. Axially downstream the Held ramps gradually downward by a factor of sixteen, while the bore increases fourfold. The steady-state system needed for an accelerator has many superconducting coils and a radiation-resistant insert of mineral-insulated hollow conductor. Less costly, pulsed systems suffice to study pion capture and the effect of a magnetic field on a jet hit by a proton beam. BNL has explored three types of magnets, each with its principal coils precooled by liquid nitrogen. One type employs two sets of coils energized sequentially. Charged in 23 s by a power supply of 5 MVA, the 14-ton outer set generates 10 T and stores 28 NU, from which, in 1/3 s, to charge a half-ton inner coil that adds 12 1/2 T to the 7 1/2 T remaining from the outer set. An alternative design uses 25 MVA to energize, in 1.4 s, a single 3-ton set of coils. The third type bows to budgetary constraints and is more modest in size and performance. A magnet of 2-3 tons generates 10-11 T with only 2 MVA, in a bore big enough (11 cm) to accommodate the jet. It foregoes the field ramp that improves pion retention.
机译:对于中微子工厂和Muon对撞机协作,BNL考虑了多种类型的电磁磁体系统,以捕获通过用多GeV质子轰击水银射流而产生的离子。磁铁系统产生的最大功率为20 T,在直径0.15 m,长度为0.6 m的圆柱体中均匀分布到5%。在轴向下游,Held逐渐向下倾斜了十六分之一,而钻孔则增加了四倍。加速器所需的稳态系统具有许多超导线圈和矿物绝缘空心导体的耐辐射插件。成本较低的脉冲系统足以研究离子捕获和质子束撞击的射流上的磁场影响。 BNL已经研究了三种类型的磁体,每种磁体的主要线圈都经过液氮预冷。一种类型使用两组顺序通电的线圈。 14吨的外部装置在23 s内通过5 MVA的电源充电,产生10 T的电流并存储28 NU,从1/3 s到28 NU的电压为半吨的内部线圈充电,从而增加了12 1/2 T到外部组剩余的7 1/2T。另一种设计是使用25 MVA在1.4 s内为一组3吨线圈通电。第三种类型受预算限制,在尺寸和性能上较为适中。 2-3吨的磁铁在足够大(11厘米)的直径可容纳射流的情况下,仅以2 MVA产生10-11T。它放弃了提高离子保留能力的磁场斜坡。

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