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ZHANG Haifei, BAO Xiaojun, WANG Jiamei, HUANG Yin, LI Junqing, ZHANG Hongfei. Generalized Liquid Drop Model and Its Application[J]. Nuclear Physics Review, 2013, 30(3): 241-259. doi: 10.11804/NuclPhysRev.30.03.241
Citation: ZHANG Haifei, BAO Xiaojun, WANG Jiamei, HUANG Yin, LI Junqing, ZHANG Hongfei. Generalized Liquid Drop Model and Its Application[J]. Nuclear Physics Review, 2013, 30(3): 241-259. doi: 10.11804/NuclPhysRev.30.03.241

Generalized Liquid Drop Model and Its Application

doi: 10.11804/NuclPhysRev.30.03.241
  • Received Date: 1900-01-01
  • Rev Recd Date: 1900-01-01
  • Publish Date: 2013-09-20
  • Recent theoretical achievements and challenges about the fusion and decay properties of heavy and superheavy nuclei are generally introduced. Especially, the Generalized Liquid Drop Model(GLDM) as well as its application are emphatically described. Based on the mass number, proton number and the reaction Q value, the GLDM has taken the mass and charge asymmetry, the shape evolution, the proximity potential, as well as the temperature of nucleus into account, well described the proton radioactivity, the decay, the heavy particle radioactivity, the half life of spontaneous fission of heavy nuclei and superheavy nuclei, and the cross-sections of heavy ion fusion. The competitions between the spontaneous fission and other decay modes such as proton and heavy particle radioactivity, the alpha decay, and so on are also studied.
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Generalized Liquid Drop Model and Its Application

doi: 10.11804/NuclPhysRev.30.03.241

Abstract: Recent theoretical achievements and challenges about the fusion and decay properties of heavy and superheavy nuclei are generally introduced. Especially, the Generalized Liquid Drop Model(GLDM) as well as its application are emphatically described. Based on the mass number, proton number and the reaction Q value, the GLDM has taken the mass and charge asymmetry, the shape evolution, the proximity potential, as well as the temperature of nucleus into account, well described the proton radioactivity, the decay, the heavy particle radioactivity, the half life of spontaneous fission of heavy nuclei and superheavy nuclei, and the cross-sections of heavy ion fusion. The competitions between the spontaneous fission and other decay modes such as proton and heavy particle radioactivity, the alpha decay, and so on are also studied.

ZHANG Haifei, BAO Xiaojun, WANG Jiamei, HUANG Yin, LI Junqing, ZHANG Hongfei. Generalized Liquid Drop Model and Its Application[J]. Nuclear Physics Review, 2013, 30(3): 241-259. doi: 10.11804/NuclPhysRev.30.03.241
Citation: ZHANG Haifei, BAO Xiaojun, WANG Jiamei, HUANG Yin, LI Junqing, ZHANG Hongfei. Generalized Liquid Drop Model and Its Application[J]. Nuclear Physics Review, 2013, 30(3): 241-259. doi: 10.11804/NuclPhysRev.30.03.241

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