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Design Studies of ${hbox{Nb}}_{3}{hbox{Sn}}$ High-Gradient Quadrupole Models for LARP

机译:$ {hbox {Nb}} _ {3} {hbox {Sn}} $ LARP高梯度四极杆模型的设计研究

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摘要

Insertion quadrupoles with large aperture and high gradient are required to achieve the luminosity upgrade goal of $10^{35} {rm cm}^{-2}{rm s}^{-1}$ at the Large Hadron Collider (LHC). In 2004, the US Department of Energy established the LHC Accelerator Research Program (LARP) to develop a technology base for the upgrade. ${rm Nb}_{3}{rm Sn}$ conductor is required in order to operate at high field and with sufficient temperature margin. We report here on the conceptual design studies of a series of 1 m long “High-gradient Quadrupoles” (HQ) that will explore the magnet performance limits in terms of peak fields, forces and stresses. The HQ design is expected to provide coil peak fields of more than 15 T, corresponding to gradients above 300 T/m in a 90 mm bore. Conductor requirements, magnetic, mechanical and quench protection issues for candidate HQ designs will be presented and discussed.
机译:在大强子对撞机(LHC)上需要使用具有大孔径和高梯度的插入四极杆来实现$ 10 ^ {35} {rm cm} ^ {-2} {rm s} ^ {-1} $的发光度升级目标。 2004年,美国能源部建立了LHC加速器研究计划(LARP),以开发用于升级的技术基础。需要$ {rm Nb} _ {3} {rm Sn} $导体,以便在高磁场下工作并具有足够的温度裕度。我们在这里报告了一系列1 m长的“高梯度四极杆”(HQ)的概念设计研究,这些研究将探讨在峰值场,力和应力方面的磁体性能极限。预计HQ设计将提供大于15 T的线圈峰值场,对应于90 mm孔中300 T / m以上的梯度。将介绍和讨论候选HQ设计的导体要求,电磁,机械和失超保护问题。

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