On the multiple-humped fission barriers and half-lives of actinides

被引:8
作者
Laboratoire Subatech, UMR: IN2P3/CNRS, Université - Ecole des Mines, 4 rue A. Kastler, 44307 Nantes Cedex 03, France [1 ]
机构
[1] Laboratoire Subatech, UMR: IN2P3/CNRS, Université - Ecole des Mines, 44307 Nantes Cedex 03
来源
Acta Phys. Hung. Ser. A Heavy Ion Phys. | 2006年 / 1卷 / 11-28期
关键词
Actinides; Fission; Half-lives; Liquid drop model;
D O I
10.1556/APH.25.2006.1.2
中图分类号
学科分类号
摘要
The energy of actinide nuclei has been determined within a generalized liquid drop model taking into account the proximity energy, the mass and charge asymmetry, an accurate nuclear radius in adding the shell and pairing energies. Double and triple-humped potential barriers appear. The second maximum corresponds to the transition from compact and creviced one-body shapes to two touching ellipsoids. A third minimum and third peak appear in special asymmetric exit channels where one fragment is almost a magic nucleus with a quasi-spherical shape while the other one evolves from oblate to prolate shapes. The heights of the double and triple-humped fission barriers agree precisely with the experimental results in all the actinide region. The predicted half-lives follow the experimental data trend. © 2006 Akadémiai Kiadó, Budapest.
引用
收藏
页码:11 / 28
页数:17
相关论文
共 26 条
[1]  
Duijvestijn M.C., Koning A.J., Hambsch F.J., Phys. Rev., C64, (2001)
[2]  
Krasznahorkay A., Hunyadi M., Harakeh M.N., Csatlos M., Faestermann T., Gollwitzer A., Graw G., Gulyas J., Habs D., Hertenberger R., Maier H.J., Mate Z., Rudolph D., Thirolf P., Timar J., Valnion B.D., Phys. Rev. Lett., 80, (1998)
[3]  
Krasznahorkay A., Habs D., Hunyadi M., Gassmann D., Csatlos M., Eisermann Y., Faestermann T., Graw G., Gulyas J., Hertenberger R., Maier H.J., Mate Z., Metz A., Ott J., Thirolf P., Van Der Werf S.Y., Phys. Lett., B461, (1999)
[4]  
Hunyadi M., Gassmann D., Krasznahorkay A., Habs D., Thirolf P.G., Csatlos M., Eisermann Y., Faestermann T., Graw G., Gulyas J., Hertenberger R., Maier H.J., Mate Z., Metz A., Chromik M.J., Phys. Lett., B505, (2001)
[5]  
Blons J., Mazur C., Paya D., Ribrag M., Weigmann H., Nucl. Phys., A414, (1984)
[6]  
Marinov A., Gelberg S., Kolb D., Brandt R., Pape A., Int. J. Mod. Phys., E12, 5, (2003)
[7]  
Galindo-Uribarri A., Andrews H.R., Ball G.C., Drake T.E., Janzen V.P., Kuehner J.A., Mullins S.M., Persson L., Prevost D., Radford D.C., Waddington J.C., Ward D., Wyss R., Phys. Rev. Lett., B71, (1993)
[8]  
Royer G., Haddad F., Phys. Rev., C47, (1993)
[9]  
Strutinsky V.M., Nucl. Phys., A95, (1967)
[10]  
Myers W.D., Swiatecki W.J., Ark. Fys., 36, (1967)