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Record fast-cycling accelerator magnet based on HTS conductor

机译:基于HTS导体记录快速循环加速器磁铁

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摘要

Four decades ago development of high-current superconducting NbTi wire cables revolutionized the magnet technology for energy frontier accelerators, such as Tevatron, RHIC and LHC. The NbTi based magnets offered advantage of much higher fields B and much lower electric wall plug power consumption if operated at 4.5 K but relatively small ramping rates dB/dt 0.1 T/s. The need for the accelerators of high average beam power and high repetition rates have initiated studies of fast ramping SC magnets, but it was found the AC losses in the low-temperature superconductors preclude obtaining the rates in the excess of (1-4) T/s. Here we report the first application of high-temperature superconductor magnet technology with substantially lower AC losses and report record high ramping rates of 12 T/s achieved in a prototype dual-aperture accelerator magnet.
机译:四十年前,大电流超导NbTi电缆的开发彻底改变了Tevatron,RHIC和LHC等能源前沿加速器的磁体技术。基于NbTi的磁体具有以下优势:如果以4.5 K的功率运行,则场B更高,电墙插头的功耗更低,但斜率相对较小,dB / dt 0.1 T / s。对高平均束功率和高重复频率的加速器的需求已开始研究快速倾斜的SC磁体,但是发现低温超导体中的交流电损耗无法获得超过(1-4)T的速度/ s。在这里,我们报告了高温超导体磁体技术的首次应用,其交流电损耗大大降低,并报告了在原型双孔加速器磁体中实现的12 T / s的高斜率。

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