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Uniform Magnetic Field in the Bending Magnet for the Compact Proton Synchrotron

机译:紧凑质子同步加速器弯曲磁铁中的均匀磁场

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摘要

Radiation therapy using high-energy protons is a very effective method of cancer treatment. To attain the necessary beam energy for cancer therapy using a very compact synchrotron, the magnetic field of the normal-conductive bending magnet must be excited up to 3 - 5 T. However, increasing the field up to 4 T produces a sextupole component in the field. The sextupole component can be reduced by changing the geometry of the coil, but establishing the optimal geometry is very time-consuming. A new optimization method has been developed to establish the uniform field in the bending magnet. As a result, the optimal geometry is obtained with less calculation time.
机译:使用高能质子的放射疗法是一种非常有效的癌症治疗方法。为了使用非常紧凑的同步加速器获得用于癌症治疗的必要束能,法向导电弯曲磁体的磁场必须被激发到3-5T。但是,将磁场增加到4 T时会在磁场中产生六极分量。领域。通过改变线圈的几何形状可以减少六极分量,但是建立最佳几何形状非常耗时。已经开发出一种新的优化方法来在弯曲磁体中建立均匀磁场。结果,以更少的计算时间获得了最佳的几何形状。

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