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报告摘要:The magic numbers were successfully explained by the nuclear shell model proposed by Gopper-Mayer and Jensen sixty years ago. The shell model predicts that the next doubly magic nucleus in the sequence will contain either 114, 120, 124 or 126 protons and 184 neutrons. However, the dynamical process of the formation of superheavy nucleus is not understood well enough. In this talk, I will review our recent progress on synthesis of superheavy nuclei by using a transport theory.
报告人简介:Prof. Feng-Shou Zhang, Doctor of Science, now is a professor of physics, vice dean of the College of Nuclear Sciences and Technology of Beijing Normal University, Outstanding Young Investigator award by NSFC, One Hundred Talents Program award by the Chinese Academy of Sciences,Member of the Standing Committee of the Chinese Nuclear Physics Society, Member of the Branch of the irradiation and environment of the Biophysical Society of China,Member of the Academic Committee of the Beijing Radiation Center. He got his B Sc in theoretical physics at Northwestern University in Xi’an, M Sc in nuclear physics and technology at Institute of Modern Physics of the Chinese Academy of Sciences, D Sc in nuclear physics and technology at Lanzhou University. Prof. Feng-Shou Zhang got the President prize of excellence award by the president of the Chinese Academy of Sciences in 1989, and the 2nd class prize of the science and technology progress of Gansu province of China in 2000. He was an organizer or co-organizer of 6 international conferences and with 4 proceedings. Currently, Prof. Feng-Shou Zhang’ researches focus on heavy ion reaction theory, cluster science and technology, interaction of heavy ions with biomolecules, nuclear technology and application in medicine, biology, and agriculture.
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