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The RI beams from the Tokai Radioactive Ion Accelerator Complex (TRIAC)

Osa, Akihiko  ; Abe, Shinichi; Asozu, Takuhiro  ; Hanashima, Susumu; Ishii, Tetsuro  ; Ishizaki, Nobuhiro  ; Kabumoto, Hiroshi  ; Kutsukake, Kenichi ; Matsuda, Makoto  ; Nakamura, Masahiko; Nakanoya, Takamitsu  ; Otokawa, Yoshinori  ; Tayama, Hidekazu; Tsukihashi, Yoshihiro; Arai, Shigeaki*; Ishiyama, Hironobu*; Imai, Nobuaki*; Okada, Masayuki*; Oyaizu, Mitsuhiro*; Jeong, S.-C.*; Niki, Kazuaki*; Hirayama, Yoshikazu*; Fuchi, Yoshihide*; Miyatake, Hiroari*; Watanabe, Yutaka*

At JAEA-tandem accelerator facility, we can produce radioactive nuclei by means of proton induced uranium fission, heavy ion fusion or transfer reaction. Since TRIAC was opened for use in 2005, we have provided RNBs of fission products and $$^{8}$$Li. For the production of $$^{8}$$Li, we chose $$^{13}$$C ($$^{7}$$Li, $$^{8}$$Li) neutron transfer reaction by $$^{7}$$Li primary beam and a 99% enriched $$^{13}$$C sintered disk target. The release time of Li ions from the $$^{13}$$C sintered target/ion source system was measured to be 3.2 s. We are developing the RNB of $$^{9}$$Li (T$$_{1/2}$$=178 ms) but the long release time caused a significant loss of the beam intensity. A boron nitride target which has fast release of Li is developed for $$^{9}$$Li beam with intensity of 10$$^{4}$$ pps after separation by JAEA-ISOL.

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