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A 1.2T canted cos theta dipole magnet using high-temperature superconducting CORC (R) wires

机译:使用高温超导Corc(R)电线的1.2T倾斜COSθTheta偶极磁铁

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摘要

REBa2Cu3Ox (REBCO, RE = rare earth elements) coated conductors can carry high current in high background fields, in principle enabling dipole magnetic fields beyond 20 T. Although model accelerator magnets wound with single REBCO tapes have been successfully demonstrated, magnet technology based on high-current REBCO cables for high-field accelerator magnet applications has yet to be established. We developed a two-layer canted cos theta dipole magnet with an aperture of 70 mm using 30 m long commercial Conductor on Round Core (CORC (R)) wires. The 3.1 mm diameter CORC (R) wire contained 16 commercial REBCO tapes with a 30 mu m thick substrate. The magnet was tested at 77 and 4.2 K. It generated a peak dipole field of 1.2 T with 4.8 kA at 4.2 K with neither thermal runaway nor training. Reasonable geometric field quality and strong magnetization-current effects with multipole decay were observed. Our work demonstrated a feasible high-temperature superconducting magnet technology as a first step toward a new accelerator magnet paradigm that will enable high-field inserts for next-generation circular colliders and stand-alone magnets that can operate over a wide temperature range for a broad range of applications.
机译:Reba2Cu3ox(REBCO,RE =稀土元素)涂层导体可以在高背景领域携带高电流,原则上是偶极磁场超过20吨。尽管已经成功地证明了单次射频磁带的模型加速器磁铁,但基于高磁铁技术 - 用于高现场加速器磁铁应用的电流雷柏电缆尚未建立。我们开发了一种双层倾斜COSTHATA偶极磁铁,在圆形芯上使用30米长的商业导体(CORC(R))电线使用30米长的商业导线。 3.1毫米直径的CORC(R)电线包含16个商业rebco带,具有30μm厚的基板。在77和4.2K下测试磁体。它在4.2 k下产生1.2吨的峰偶极场,既不是热失控也没有培训。观察到具有多极衰减的合理的几何场质量和强磁化 - 电流效应。我们的工作证明了一种可行的高温超导磁铁技术,作为朝向新型加速器磁铁范例的第一步,这将使下一代圆形侵占和独立磁体能够在宽的温度范围内运行的高场插入物应用范围。

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