Paper |
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TUM1I01 |
Status and Upgrades of HIRFL |
110 |
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- Y.J. Yuan, D.Q. Gao, P. Li, L.Z. Ma, X. Ma, L.J. Mao, R.S. Mao, J. Meng, L.T. Sun, J.X. Wu, J.W. Xia, Z. Xu, J.C. Yang, X. Yin, W. Zhang, X.H. Zhang, H.W. Zhao
IMP/CAS, Lanzhou, People's Republic of China
- S.A. Litvinov, Yu.A. Litvinov, F. Nolden, M. Steck
GSI, Darmstadt, Germany
- G. Liu, Y.R. Lu, K. Zhu
PKU, Beijing, People's Republic of China
- V.V. Parkhomchuk
BINP SB RAS, Novosibirsk, Russia
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The Heavy Ion Research Facility at Lanzhou (HIRFL) is the only one large scale heavy ion accelerator complex that uses cyclotron (SFC and SSC) as injector, synchrotron (CSRm) for accumulation and post acceleration, storage ring (CSRe) for in-ring experiments in Asia. To reach the increasing requirements from nuclear physics, atomic physics, interdisciplinary science and their applications, many upgrading plans were launched or scheduled. The present status and recent upgrading plans of HIRFL will be introduced in this paper. For the upgrading plans, the development of new linac injector for HIRFL and the plans to improve the performance of experiments will be discussed in detail.
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Slides TUM1I01 [32.431 MB]
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THM1I01 |
Challenges for the Next Generation ECRIS |
268 |
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- L.T. Sun, J.W. Guo, W. Lu, L.Z. Ma, W. Wu, Y. Yang, H.W. Zhao
IMP/CAS, Lanzhou, People's Republic of China
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As an indispensible device to produce intense highly charged ion beams, ECR ion source has evolved into the 4th generation. Knowledge from the development of the 3rd generation ECR ion sources could provide valuable reference for the next generation machine design and fabrication, however there are still many challenges with regards to several key technical issues and physics approaches. This paper will review what we have learned from the state of the art ECR ion sources, and then critical aspects concerning the higher performance next generation ECR ion sources development will be discussed.
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Slides THM1I01 [20.248 MB]
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