Synthesis and Identification of the New Transuranium Neutron-deficient Isotope235Am

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Guo Junsheng, Gan Zaiguo, Liu Hongye, Shi Lijun, Yang Weifan, Mou Wantong, Guo Tianrui, Fang Keming, Shen Shuifa, Yuan Shuanggui, Zhong Jiquan, Zhang Xueqian, Qin Zhi, Ma Ruichang, Wang Shuhong, Kong Dengming and Qiao Jimin. Synthesis and Identification of the New Transuranium Neutron-deficient Isotope 235Am[J]. Chinese Physics C, 1996, 20(3): 286-288.
Guo Junsheng, Gan Zaiguo, Liu Hongye, Shi Lijun, Yang Weifan, Mou Wantong, Guo Tianrui, Fang Keming, Shen Shuifa, Yuan Shuanggui, Zhong Jiquan, Zhang Xueqian, Qin Zhi, Ma Ruichang, Wang Shuhong, Kong Dengming and Qiao Jimin. Synthesis and Identification of the New Transuranium Neutron-deficient Isotope 235Am[J]. Chinese Physics C, 1996, 20(3): 286-288. shu
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Received: 1900-01-01
Revised: 1900-01-01
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      沈阳化工大学材料科学与工程学院 沈阳 110142

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    Synthesis and Identification of the New Transuranium Neutron-deficient Isotope235Am

      Corresponding author:Guo Junsheng,
    • Institute of Modem Physics, The Chiners Academy of Sciences, Lanzhou,7300002 Institute of High Energy Physics, The Chinese Academy of Sciences, Beijing 100039

      Abstract:A new neutron-deficient isotope235Am was synthesized in the reaction of238Pu (p, 4n)235Am by using 35MeV proton bombarding235Pu target. The Products were transported by the He-jet system. The Am was seperated from the reaction products using radiochemistry method. The y-ray of23pu and X-ray of Np following EC decay of235Am were observed. Based on the growth-decay cruve of X-ray of Np and the X-y coincidence measurements, the synthesis of235Am was confirmed for the first time. The measured halflife of 35Am is 15±5min.

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