论文标题
开发用于余弦-200实验的超纯NAI(TL)检测器
Development of ultra-pure NaI(Tl) detectors for the COSINE-200 experiment
论文作者
论文摘要
Dama实验观察到的年度调制信号是暗物质直接检测社区中的一个长期问题。这需要使用相同的检测技术对其存在进行独立验证。 Cosine-100实验一直在使用106千克的低背景NAI(TL)检测器进行操作,可在Dama信号上进行有趣的检查。但是,由于相对于Dama使用的NAI(TL)晶体的较高背景,因此很难得出最终的结论。自2016年余弦100数据开始以来,我们还启动了一个程序来开发用于余弦的超纯NAI(TL)晶体,这是实验的下一阶段。该计划包括原粉纯化,超纯NAI(TL)晶体生长和检测器组装技术的努力。经过NAI(TL)晶体生长的广泛研究和开发,我们成功地种植了一些小型(0.61 $ -0.78千克)的thallium掺杂晶体,具有较高的无线电纯度。通过改进我们的检测器组装技术,已经实现了高光收益。在这里,我们报告了韩国基础科学研究所的Ultra-Pure NAI(TL)检测器开发。此处开发的技术将应用于用于余弦实验的NAI(TL)检测器的生产。
The annual modulation signal observed by the DAMA experiment is a long-standing question in the community of dark matter direct detection. This necessitates an independent verification of its existence using the same detection technique. The COSINE-100 experiment has been operating with 106~kg of low-background NaI(Tl) detectors providing interesting checks on the DAMA signal. However, due to higher backgrounds in the NaI(Tl) crystals used in COSINE-100 relative to those used for DAMA, it was difficult to reach final conclusions. Since the start of COSINE-100 data taking in 2016, we also have initiated a program to develop ultra-pure NaI(Tl) crystals for COSINE-200, the next phase of the experiment. The program includes efforts of raw powder purification, ultra-pure NaI(Tl) crystal growth, and detector assembly techniques. After extensive research and development of NaI(Tl) crystal growth, we have successfully grown a few small-size (0.61$-$0.78 kg) thallium-doped crystals with high radio-purity. A high light yield has been achieved by improvements of our detector assembly technique. Here we report the ultra-pure NaI(Tl) detector developments at the Institute for Basic Science, Korea. The technique developed here will be applied to the production of NaI(Tl) detectors for the COSINE-200 experiment.