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首页> 外文期刊>Fusion Science and Technology >INDUCTION ACCELERATOR TECHNOLOGY CHOICES FOR THE INTEGRATED BEAM EXPERIMENT (IBX)
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INDUCTION ACCELERATOR TECHNOLOGY CHOICES FOR THE INTEGRATED BEAM EXPERIMENT (IBX)

机译:集成束实验(IBX)的感应加速器技术选择

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Over the next three years the research program of the Heavy Ion Fusion Virtual National Laboratory (HIF-VNL), a collaboration among LBNL, LLNL, and PPPL, is focused on separate scientific experiments in the injection, transport and focusing of intense heavy ion beams at currents from 100 mA to 1A, Asa next major step in the HIF-VNL program, we aim for a complete "source-to-target" experiment, the Integrated Beam Experiment (IBX). By combining the experience gained in the current separate beam experiments IBX would allow the integrated scientific study of the evolution of a single heavy ion beam at high current (~1A) through all sections of a possible heavy ion fusion accelerator: the injection, acceleration, compression, and beam focusing. This paper describes the main parameters and technology choices of the planned IBX experiment. IBX will accelerate singly charged potassium or argon ion beams up to 10 MeV final energy and a longitudinal beam compression ratio of 10, resulting in a beam current at target of more than 10 Amperes. Different accelerator cell design options are described in detail: Induction cores incorporating either room temperature pulsed focusing-magnets or superconducting magnets.
机译:在接下来的三年中,LBNL,LLNL和PPPL之间的重离子聚变虚拟国家实验室(HIF-VNL)的研究计划专注于强重离子束的注入,传输和聚焦方面的单独科学实验。在100 mA至1A的电流下,这是HIF-VNL计划的下一个重要步骤,我们的目标是进行完整的“源到目标”实验,即集成束实验(IBX)。结合目前在单独的离子束实验中获得的经验,IBX可以对单个重离子束在大电流(〜1A)下通过可能的重离子聚变加速器所有部分的演化进行综合科学研究,包括注入,加速,压缩和光束聚焦。本文描述了计划的IBX实验的主要参数和技术选择。 IBX将加速单电荷的钾或氩离子束,直至最终能量为10 MeV,纵向束压缩比为10,从而使目标束电流超过10安培。详细描述了不同的加速器电池设计选项:包含室温脉冲聚焦磁体或超导磁体的感应芯。

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