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Design study of low energy beam transport line for ion beams of the post-accelerator at RAON

机译:RAON后加速器离子束低能束流传输线的设计研究

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Low-energy ions produced by the ion source pass through the focusing and acceleration sections. During this process, the ions accumulate energy and are finally transported to the apparatus that utilizes them for a specific purpose. Thus, in order to increase the transmission efficiency of the ton beams, the low energy beam transport (LEBT) system must minimize the beam loss and the emittance growth. The LEBT system is designed and optimized to transmit ~(132)Sn~(16+) and ~(58)Ni~(8+) beams of the post-accelerator at RAON that is the accelerator complex for the rare isotope science. The post-accelerator LEBT line comprises solenoids and electrostatic quadrupoles for transverse focusing and a multi-harmonic buncher for longitudinal focusing. This paper presents the results of the optical design and beam tracking for the post-accelerator LEBT obtained by using TraceWIN and TRACK codes.
机译:离子源产生的低能离子通过聚焦和加速部分。在此过程中,离子会积聚能量,最后被传输到将其用于特定目的的设备。因此,为了提高吨光束的传输效率,低能光束传输(LEBT)系统必须使光束损耗和发射率增长最小化。 LEBT系统经过设计和优化,可以在RAON上传输后加速器的〜(132)Sn〜(16+)和〜(58)Ni〜(8+)光束,这是稀有同位素科学的加速器复合体。加速器后LEBT线包括用于横向聚焦的螺线管和静电四极杆以及用于纵向聚焦的多谐波成束器。本文介绍了使用TraceWIN和TRACK代码获得的后加速器LEBT的光学设计和光束跟踪的结果。

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