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Recent progress on the development of Li-8 radioactive ion beam based on 100-MeV proton linear accelerator at KOMAC

机译:基于100-MEV质子线性加速器在KOMAC的Li-8放射性离子束开发的最新进展

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The beta-detected nuclear magnetic resonance (β -NMR) technique is a novel method that obtains depth-resolved information on samples by observing the asymmetric beta decay of nuclear probes. Although the beta-detected NMR has several advantages over the conventional NMR techniques, the number of user facilities in the world is severely limited. At the site of Korea Multi-purpose Accelerator Complex (KOMAC), we initiated a research project to develop a radioactive ion (RI) beam facility dedicated for the future beta-detected NMR facility at KOMAC based on a 100-MeV proton linear accelerator. In this endeavour, we developed a prototype of a target-ion-source (TIS) composed of low-Z production targets, target container, target heater, high-current feed through, and hot surface ion source. In recent on-line experiments, we have demonstrated that a Li-8 beam of the order of 10~6 pps could be extracted with the prototype design of the TIS. Here, we present the recent progress of the RI beam development study.
机译:β检测到的核磁共振(β-NMR)技术是一种新的方法,通过观察核探针的不对称β衰减,通过观察到对样品进行深度分辨的信息。虽然β检测到的NMR与传统的NMR技术有几个优点,但世界上的用户设施数量严重限制。在韩国多用途加速器复合物(KOMAC)的网站上,我们启动了一个研究项目,用于基于100MeV质子线性加速器开发专用于Komac的未来β检测到的NMR设施的放射性离子(RI)光束设施。在这种努力中,我们开发了由低Z生产目标,目标容器,靶加热器,高电流馈电和热表面离子源组成的目标离子源(TIS)的原型。在最近的在线实验中,我们已经证明了可以用TIS的原型设计提取10〜6 PPS的Li-8光束。在这里,我们展示了RI波束开发研究的最近进展。

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