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Research on the effect of magnet parameters on the isochronous field of a superconducting cyclotron

机译:磁体参数对超导回旋加速器等时的影响研究

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It is a complicated task to obtain an isochronous field of a cyclotron magnet. Due to non-linear property of iron, iterated simulation of magnet design takes a long time to get an isochronous field. As an example, for a magnet design of a 240 MeV (SC240) superconducting cyclotron, the effect of main parameters of a magnet system on the magnetic field was studied, among them the azimuthal sector width, the spiral sector angle, the gap between sectors, the depth of valley region, the position of the coil, the shape of the coil and the excited current of the superconducting coil. It was found that the azimuthal average magnetic field can be increased by any of the following methods, including enlarging azimuthal width, increasing excited current of the superconducting coil, narrowing of the gap between sectors, reducing the depth of the valley region or decreasing the distance between the coil and the mid-plane. In addition, axial oscillation frequency can be improved by increasing the spiral angle, the depth of the valley region, or decreasing the gap between sectors.
机译:它是获得回旋磁铁的同步领域的复杂任务。由于铁的非线性性能,磁体设计的迭代仿真需要很长时间才能获得同步域。例如,对于240MeV(SC240)超导回旋的磁体设计,研究了磁体系统对磁场上的主要参数的影响,其中方位扇区宽度,螺旋扇区角度,扇区之间的间隙,谷地区的深度,线圈的位置,线圈的形状和超导线圈的激发电流。结果发现方形平均磁场可以通过以下任何方法增加,包括放大方位角宽度,增加超导线圈的激发电流,扇区之间的间隙变窄,减小谷区域的深度或减小距离在线圈和中平面之间。另外,通过增加螺旋角,谷区域的深度或降低扇区之间的间隙,可以提高轴向振荡频率。

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