[1] Zhan Wenlong, Xu Hushan. Advanced fission energy program-ADS transmutation system[J]. Bulletin of Chinese Academy of Sciences, 2012, 27: 375-381.
[2] Wang Jing, Huang Jian-Long, He Yuan, et al. Multi-physics analysis of the RFQ for Injector SchemeⅡof C-ADS driver linac[J]. Chinese Physics C, 2014, 38(10): 107005. doi: 10.1088/1674-1137/38/10/107005
[3] Niu Haihua, Li Youtang, He Yuan, et al. The mechanical design and fabrication of 162.5 MHz buncher for China accelerator driven sub-critical system injector II[J]. Nuclear Engineering and Technology, 2017, 49: 1071-1078. doi: 10.1016/j.net.2017.03.003
[4] Wu Q, Zhang Z M, Sun L T, et al. A 2.45 GHz intense proton source and low energy beam transport system for China Initiative Accelerator Driven Sub-Critical reactor system[J]. Review of Scientific Instruments, 2014, 85: 02A703. doi: 10.1063/1.4824804
[5] Yang Y, Zhang Z M, Wu Q, et al. A low energy beam transport system for proton beam[J]. Review of Scientific Instruments, 2013, 84: 033306. doi: 10.1063/1.4796096
[6] Yang Yao, Zhang Zimin, Zhang Wenhui, et al. Study on beam emittance growth induced by spherical aberration of solenoid lens[J]. Atomic Energy Science and Technology, 2013, 47(12): 2336-2340.
[7] Celona L, Allegra L, Amato A, et al. Preliminary commissioning results of the proton source for ESS at INFN-LNS[C]// Proc of IPAC. 2016: 2628-2631.
[8] Eshraqi M, Danared H, Jansson A, et al. ESS linac beam physics design update[C]// Proc of IPAC. 2016: 947-950.
[9] Weissman L, Berkovits D, Arenshtam A, et al. SARAF phase I linac in 2012[J]. Journal of Instrumentation, 2014, 9: T05004.
[10] Kai D, Florian K, Christian P. Performance of the SARAF ion source[C]// Proc of PAC07, 2007, TUPAN009: 1407-1409.
[11] Weissman L, Berkovits D, Eliyahu I, et al. The state of the SARAF LINAC Project[C]// Proc of LINAC. 2010: 679-683.
[12] Wu Qi, Jia Huan, Ma Hongyi, et al. Research of emittance matching on the low energy beam transport line for ADS proton LINAC[J]. Nuclear Physics Review, 2015, 32: 5-9.
[13] Chen Weilong. LEBT design based on beam loss control[D]. Beijing: University of Chinese Academy of Sciences, 2016