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IH-DTL design with KONUS beam dynamics for KHIMA project

机译:用于KHIMA项目的具有KONUS光束动力学特性的IH-DTL设计

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The Kombinierte Null Grad Struktur (KONUS) beam dynamics design of the interdigit H-mode drift tube linac (IH-DTL) for the Korea Heavy Ion Medical Accelerator (KHIMA) project is presented. We performed a KONUS beam dynamics simulation for a carbon beam (~(12)C~(4+)) with the LORASR code. The ~(12)C~(4+) beam was accelerated from an input energy of 0.4 MeV/u to an output energy of 7 MeV/u by the IH-DTL operated at 200 MHz. The optimization aims were to increase the transmission efficiency and to minimize the beam emittance growth, beam loss, and project costs. The buncher with two gaps and two quadrupole doublets were placed between the RFQ. and the IH-DTL. The whole IH-DTL consists of two tanks, 56 acceleration gaps, and four quadrupole triplets. It achieves a transmission efficiency of 100%. The total length from the exit of the RFQ to the exit of the IH-DTL is approximately 507.7 cm.
机译:提出了韩国重离子医学加速器(KHIMA)项目的叉指式H型漂移管直线加速器(IH-DTL)的Kombinierte Null Grad Struktur(KONUS)射束动力学设计。我们使用LORASR代码对碳束(〜(12)C〜(4+))进行了KONUS束动力学仿真。通过以200 MHz工作的IH-DTL,〜(12)C〜(4+)光束从0.4 MeV / u的输入能量加速到7 MeV / u的输出能量。优化的目的是提高传输效率,并最大程度地减少光束发射率的增长,光束损耗和项目成本。在RFQ之间放置具有两个间隙和两个四极双峰的成束器。和IH-DTL。整个IH-DTL由两个油箱,56个加速间隙和四个四极三元组组成。它实现了100%的传输效率。从RFQ出口到IH-DTL出口的总长度约为507.7 cm。

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