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Monte Carlo Study in Radiation Damage Experiments of Permanent Magnets by High Energy Electrons

机译:高能量电子辐射损伤永磁体辐射损伤实验的蒙特卡罗研究

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The demagnetization of permanent magnets used in the insertion device, becomes one of the most important issues of the next generation light sources. The demagnetization experiment has been carried out at the electron linac of Pohang Light Source. To find out the mechanism of radiation damage to the magnet, the radiation field around and inside the target and magnet in the experiment is investigated with Monte Carlo code FLUKA (2005 version). The energy spectra of photons and neutrons around the target and magnet are derived and analyzed The 3-dimensional dose distributions in the target and magnet due to 2 GeV incident electrons and secondary particles are also calculated. The calculated results under different target conditions (Cu, Ta target or no target) are compared. Some important parameters such as dose and 1 MeV equivalent fluence are summarized. Finally the demagnetization of the magnet due to radiation at high energy accelerator is discussed.
机译:插入装置中使用的永磁体的退磁成为下一代光源的最重要问题之一。去磁化实验已经在浦项光源的电子Linac进行。为了找出磁体的辐射损坏机制,蒙特卡洛代码Fluka(2005版)研究了实验中的辐射场和磁铁中的辐射场。衍生并分析围绕目标和磁体周围的光子和中子的能谱,并且由于2 GEV入射电子和次级粒子也是由于2 GEV入射电子和磁体的三维剂量分布。比较了不同靶条件(Cu,Ta靶或无目标)下的计算结果。总结了一些重要的参数,如剂量和1 meV等效流量。最后,讨论了由于高能促进剂处的辐射引起的磁体的去磁。

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