Production of proton-rich nuclei in the vicinity of 100Sn via multinucleon transfer reactions
Production of proton-rich nuclei in the vicinity of 100Sn via multinucleon transfer reactions
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通过多核子转移反应在 100Sn 附近产生富质子核
DOI:
10.1016/j.physletb.2022.136886
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发表时间:
2022-01
影响因子:
4.4
通讯作者:
Guangxiong Peng
中科院分区:
文献类型:
--
作者:
Zhenji Wu;Lu Guo;Zhong Liu;Guangxiong Peng
The production of new proton-rich nuclei in the vicinity of100Sn is investigated via multinucleon transfer reactions within the framework of microscopic time-dependent Hartree-Fock (TDHF) and statistical modelGEMINI++. The TDHF+GEMINI method has demonstrated the reliable description in the multinucleon transfer dynamics and the agreement between theoretical results and experimental data is quite satisfactory in the observed transfer reactions. We reveal the production cross sections of proton-rich nuclei in100Sn region via multinucleon transfer reactions to be several orders of magnitude higher than those measured via fusion-evaporation and projectile fragmentation experiments. About 19 new proton-rich isotopes with cross sections of larger than 1 nb are predicted to be produced in multinucleon transfer reaction of58Ni with112Sn. The reaction mechanisms are discussed to lead the experimental production of these previously unreported nuclei. Multinucleon transfer reactions provide a fascinating possibility to reach the proton drip-line in100Sn region and beyond.
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影响因子:
3.1
作者:
Zhao-Qing Feng
通讯作者:
Zhao-Qing Feng
影响因子:
3.1
作者:
P. Davies;J. Park;H. Grawe;R. Wadsworth;R. Gernhäuser;R. Krücken;F. Nowacki;D. Ahn;F. Ameil;H. Baba;T. Bäck;B. Blank;A. Blazhev;P. Boutachkov;F. Browne;I. Čeliković;M. Dewald;P. Doornenbal;T. Faestermann;Y. Fang;N. Fukuda;A. Gengelbach;J. Gerl;J. Giovinazzo;S. Go;N. Goel;M. Górska;E. Gregor;H. Hotaka;S. Ilieva;N. Inabe;T. Isobe;D. Jenkins;J. Jolie;H. Jung;A. Jungclaus;D. Kameda;G. Kim;Y. K. Kim;I. Kojouharov;T. Kubo;N. Kurz;M. Lewitowicz;G. Lorusso;D. Lubos;L. Maier;E. Merchán;K. Moschner;D. Murai;F. Naqvi;H. Nishibata;D. Nishimura;S. Nishimura;I. Nishizuka;Z. Patel;N. Pietralla;M. Rajabali;S. Rice;H. Sakurai;H. Schaffner;Y. Shimizu;L. Sinclair;P. Söderström;K. Steiger;T. Sumikama;H. Suzuki;H. Takeda;J. Taprogge;P. Thöle;S. Valder;Z. Wang;N. Warr;H. Watanabe;V. Werner;Jinguang Wu;Z. Xu;A. Yagi;K. Yoshinaga;Y. Zhu
通讯作者:
P. Davies;J. Park;H. Grawe;R. Wadsworth;R. Gernhäuser;R. Krücken;F. Nowacki;D. Ahn;F. Ameil;H. Baba;T. Bäck;B. Blank;A. Blazhev;P. Boutachkov;F. Browne;I. Čeliković;M. Dewald;P. Doornenbal;T. Faestermann;Y. Fang;N. Fukuda;A. Gengelbach;J. Gerl;J. Giovinazzo;S. Go;N. Goel;M. Górska;E. Gregor;H. Hotaka;S. Ilieva;N. Inabe;T. Isobe;D. Jenkins;J. Jolie;H. Jung;A. Jungclaus;D. Kameda;G. Kim;Y. K. Kim;I. Kojouharov;T. Kubo;N. Kurz;M. Lewitowicz;G. Lorusso;D. Lubos;L. Maier;E. Merchán;K. Moschner;D. Murai;F. Naqvi;H. Nishibata;D. Nishimura;S. Nishimura;I. Nishizuka;Z. Patel;N. Pietralla;M. Rajabali;S. Rice;H. Sakurai;H. Schaffner;Y. Shimizu;L. Sinclair;P. Söderström;K. Steiger;T. Sumikama;H. Suzuki;H. Takeda;J. Taprogge;P. Thöle;S. Valder;Z. Wang;N. Warr;H. Watanabe;V. Werner;Jinguang Wu;Z. Xu;A. Yagi;K. Yoshinaga;Y. Zhu
影响因子:
64.8
作者:
G. Scamps;C. Simenel
通讯作者:
G. Scamps;C. Simenel
影响因子:
3.1
作者:
Guo Lu;Godbey K.;Umar A. S.
通讯作者:
Umar A. S.
影响因子:
3.1
作者:
Jiang Xiang;Wang Nan
通讯作者:
Wang Nan