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$$beta$$-delayed fission of $$^{230}$$Am

$$^{230}$$Amにおける$$beta$$遅延核分裂

Wilson, G. L.*; 武山 美麗*; Andreyev, A.; Andel, B.*; Antalic, S.*; Catford, W. N.*; Ghys, L.*; 羽場 宏光*; He${ss}$berger, F. P.*; Huang, M.*; 加治 大哉*; Kalaninova, Z.*; 森本 幸司*; Morita, K.*; 村上 昌史*; 西尾 勝久; Orlandi, R.; Smith, A. G.*; Tanaka, K.*; Wakabayashi, Y.*; Yamaki, S.*

Wilson, G. L.*; Takeyama, Mirei*; Andreyev, A.; Andel, B.*; Antalic, S.*; Catford, W. N.*; Ghys, L.*; Haba, Hiromitsu*; He${ss}$berger, F. P.*; Huang, M.*; Kaji, Daiya*; Kalaninova, Z.*; Morimoto, Koji*; Morita, K.*; Murakami, Masashi*; Nishio, Katsuhisa; Orlandi, R.; Smith, A. G.*; Tanaka, K.*; Wakabayashi, Y.*; Yamaki, S.*

The exotic decay process of $$beta$$-delayed fission has been studied in the neutron-deficient isotope $$^{230}$$Am at RIKEN, Japan. The $$^{230}$$Am nuclei were produced in the complete fusion reaction $$^{207}$$Pb($$^{27}$$Al,4n)$$^{230}$$Am and separated by using the GARIS gas-filled recoil ion separator. A lower limit for the $$beta$$-delayed fission probability larger than 0.30 was deduced, which so far is the highest value among all known nuclei exhibiting this decay mode.

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パーセンタイル:72.32

分野:Physics, Nuclear

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