A systematic study of the superdeformation of Pb isotopes with relativistic mean field theory

  • The microscopically constrained relativistic mean field theory is used to investigate the superdeformation for Pb isotopes. The calculations have been performed with the four different interactions NL3, PK1, TM1 and NLSH, and show that there exists a clear superdeformed minimum in the potential energy surfaces. The excitation energy, deformation and depth of the well in the
    superdeformed minimum are comparable for the four different interactions. Furthermore the trend for the change of the superdeformed excitation energy with neutron number is correctly reproduced. The calculated two-neutron separation energy in the ground state and superdeformed minimum together with their differences are in agreement with the available data. The larger energy difference appearing in the superdeformed minimum reflects a lower average level density at superdeformations for Pb isotopes.

  • 加载中
  • [1] . Singh B, Zywina R, Firestone R B. Nuclear Data Sheets,2002, 97: 2412. Khoo T L, Carpenter M P, Lauritsen T et al. Phys. Rev.Lett., 1996, 76: 15833. Hackman G, Khoo T L, Carpenter M P et al. Phys. Rev.Lett., 1997, 79: 41004. Lopez-Martens A, Hannachi F, Korichi A et al. Phys. Lett.B, 1996, 380: 185. Hauschild K, Bernstein L A, Becker J A et al. Phys. Rev.C, 1997, 55: 28196. Wilson A N, Dracoulis G D, Byrne A P et al. Phys. Rev.Lett., 2003, 90: 1425017. Siem S, Reiter P, Khoo T L et al. Phys. Rev. C, 2004, 70:0143038. Lauritsen T, Khoo T L, Ahmad I et al. Phys. Rev. C, 2000,62: 0443169. Johnson M S, Cizewski J A, Ding K Y et al. Phys. Rev. C,2005, 71: 04431010. Wilson A N, Singh A K, Hubel H et al. Phys. Rev. Lett.,2005, 95: 18250111. Satula W et al. Nucl. Phys. A, 1991, 529: 28912. Krieger S J et al. Nucl. Phys. A, 1992, 542: 4313. Heenen P H, Dobaczewski J, Nazarewicz W et al. Phys.Rev. C, 1998, 57: 171914. Libert J, Girod M, Delaroche J P. Phys. Rev. C, 1999, 60:05430115. Adamian G G, Antonenko N V, Jolos R V et al. Phys. Rev.C, 2004, 69: 05431016. Serot B, Walecka J D. Adv. Nucl. Phys., 1996, 16: 117. Reinhard P G. Rep. Prog. Phys., 1989, 52: 43918. Ring P. Prog. Part. Nucl. Phys., 1996, 37: 19319. MENG J. Nucl. Phys. A, 1998, 635: 320. Afanasjevb A V, Lalazissisc G A, Ring P. Phys. Rep., 2005,409: 10121. MENG J, Toki H, ZHOU S G, ZHANG S Q, LONG W H,GENG L S. Prog. Part. Nucl. Phys., 2006, 57: 47022. Lalazissis G A, Ring P. Phys. Lett. B, 1998, 427: 22523. Gambhir Y, Ring P. Thimet A. Ann. Phys. (N.Y.), 1990,198: 13224. ZHOU S G, MENG J, Ring P. Phys. Rev. C, 2003, 68:03432325. Ring P, Schuck P. The Nuclear Many Body Problem.Springer, 198026. Lalazissis G A, Konig J, Ring P. Phys. Rev. C, 1997, 55:54027. LONG W H, MENG J, Giai N V, ZHOU S G. Phys. Rev.C, 2004, 69: 03431928. Sugahara Y, Toki H. Nucl. Phys. A, 1994, 579: 55729. Sharma M M, Nagarajan M A, Ring P. Phys. Lett. B, 1993,312: 37730. Audi G, Wapstra A H. Nucl. Phys. A, 1995, 595: 409
  • 加载中

Get Citation
GUO Jian-You, SHENG Zong-Qiang and FANG Xiang-Zheng. A systematic study of the superdeformation of Pb isotopes with relativistic mean field theory[J]. Chinese Physics C, 2008, 32(11): 886-891. doi: 10.1088/1674-1137/32/11/008
GUO Jian-You, SHENG Zong-Qiang and FANG Xiang-Zheng. A systematic study of the superdeformation of Pb isotopes with relativistic mean field theory[J]. Chinese Physics C, 2008, 32(11): 886-891.  doi: 10.1088/1674-1137/32/11/008 shu
Milestone
Received: 2008-02-26
Revised: 2008-05-19
Article Metric

Article Views(2753)
PDF Downloads(573)
Cited by(0)
Policy on re-use
To reuse of subscription content published by CPC, the users need to request permission from CPC, unless the content was published under an Open Access license which automatically permits that type of reuse.
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

Email This Article

Title:
Email:

A systematic study of the superdeformation of Pb isotopes with relativistic mean field theory

    Corresponding author: GUO Jian-You,

Abstract: 

The microscopically constrained relativistic mean field theory is used to investigate the superdeformation for Pb isotopes. The calculations have been performed with the four different interactions NL3, PK1, TM1 and NLSH, and show that there exists a clear superdeformed minimum in the potential energy surfaces. The excitation energy, deformation and depth of the well in the
superdeformed minimum are comparable for the four different interactions. Furthermore the trend for the change of the superdeformed excitation energy with neutron number is correctly reproduced. The calculated two-neutron separation energy in the ground state and superdeformed minimum together with their differences are in agreement with the available data. The larger energy difference appearing in the superdeformed minimum reflects a lower average level density at superdeformations for Pb isotopes.

    HTML

Reference (1)

目录

/

DownLoad:  Full-Size Img  PowerPoint
Return
Return