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Beam optical design of in-flight fragment separator for high-power heavy ion beam

机译:大功率重离子束飞行中碎片分离器的束光学设计

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An in-flight fragment separator has been designed for the rare isotope science project (RISP) in Korea. A beam used for the design is ~(238)U in the energy of 200 MeV/u with the maximum beam power of 400 kW. The use of high-power beam requires careful removal of the primary beam by pre-separator, for which its configuration was revised to employ four dipole magnets instead of two. Different configurations of the separator have been tested in search of optimal design in non-linear optics, which was complicated by the space needed for the target, beam dump and radiation shielding. Non-linear optical calculations have been carried out using GICOSY and COSY Infinity including the fringe fields of large-aperture quadrupole magnets. Correction of non-linear terms is made with multipole coils located inside the superconducting quadrupole magnets and by external multipole magnets. Beam simulations using LISE++ and MOCADI have been performed to consider the effects of multiple charge states of the primary and isotope beams produced at the target. Layout of the separator is being finalized, and detailed optics simulation will continue to refine its design.
机译:飞行中的碎片分离器是为韩国稀有同位素科学项目(RISP)设计的。设计中使用的光束在能量为200 MeV / u时约为〜(238)U,最大光束功率为400 kW。使用大功率光束需要通过预分离器仔细去除一次光束,为此对其结构进行了修改,以使用四个偶极子磁铁,而不是两个。为了在非线性光学系统中寻找最佳设计,已经测试了隔离器的不同配置,这对于靶,束流收集器和辐射屏蔽所需的空间非常复杂。已经使用GICOSY和COZY Infinity进行了非线性光学计算,其中包括大孔径四极磁体的边缘场。非线性项的校正是通过位于超导四极磁体内部的多极线圈和外部多极磁体进行的。已经执行了使用LISE ++和MOCADI进行的束模拟,以考虑目标处产生的初级束和同位素束的多个电荷状态的影响。分离器的布局正在最终确定,详细的光学仿真将继续完善其设计。

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