用于锦屏深地核天体物理研究的强流加速装置的设计与试验进展

Design and Recent Progress of High Intensity Accelerator for Jinping Underground Nuclear Astrophysics Experiment (JUNA)

  • 摘要: 对揭示元素形成及天体起源具有重要作用的关键低能核反应由于反应截面较小,同时受宇生高能射线影响,在地面环境难以进行直接测量。在极低本底的深地环境中,利用强流离子加速器打靶,进一步提高关心核反应的发生率,就可在地球开展接近伽莫夫能区低能核反应截面直接测量。锦屏深地实验室(CJPL)具有优越的地理环境,可有效屏蔽宇生高能射线。依托CJPL的有利条件,中国原子能科学研究院正在开展核天体物理关注能区核反应直接测量的研究。作为开展实验研究的必要条件,一台低能强流加速装置也在建设当中。该加速装置可产生低能强流的质子束和氦束,最高加速电压400 kV,设计最大束流强度10 mA。本文介绍了用于锦屏深地核天体物理实验(JUNA)的强流加速装置的基本情况,包括加速装置的物理要求、布局及主要设计考虑、束流光学及地面试验进展等。

     

    Abstract: Direct measurement of the cross sections for the key nuclear reactions is crucial for obtaining benchmark data for stellar model, verifying extrapolation model, constraining theoretical calculations, and solving key scientific questions in nuclear astrophysics. However, cross sections of the astrophysical reactions are extremely small. Tiny reaction rates in laboratories at the earth surface are hampered by the cosmic-ray background. With the ultra-low background, underground lab becomes a promising solution of experimental nuclear astrophysics. China Jinping Underground Laboratory (CJPL) is currently deepest underground site in the world. For such experiments, a 400 kV and 10 mA accelerator specially designed for Jinping Underground Nuclear Astrophysics Experiment (JUNA) will be placed in CJPL. In this paper, JUNA high intensity accelerator was introduced. Its layout, design considerations, beam optics and recent progress in ground laboratory were presented.

     

/

返回文章
返回