欢迎登录材料期刊网

材料期刊网

高级检索

核耗散降低了裂变截面值(σdropf )。基于Langevin模型,研究了角动量对σdropf 作为鞍点前摩擦强度β函数的影响。发现在低自旋,摩擦对σdropf 的影响显著增强。通过考察系统195Bi,201Bi 和207Bi的σdropf 随β的演化,发现摩擦效应随着Bi核中质比(N/Z )的增加而变大。这些结果建议,为了更好地在实验上用裂变截面探测β,应产生那些具有低自旋、高N/Z的热核系统。

Using the Langevin model, we study the effect of angular momentum on the drop of fission cross sections caused by friction over its standard statistical-model value,σdropf , as a function of presaddle friction strength β. It is found that friction effects on σdropf are substantially enhanced at low spin. In addition, by investigating the evolution of σdropf with β for 195Bi, 201Bi and 207Bi nuclei, we find that friction effects become greater with increasing the neutron-to-proton ratio (N/Z) of Bi nucleus. These results suggest that on the experimental side, to precisely probe presaddle dissipation by measuring fission excitation functions, it is best to yield excited nuclear systems with a small spin and a large N/Z.

参考文献

[1] JACQUET D;MORJEAN M.[J].Prog Part Nucl Phys,200963:155.
[2] FELDMEIER H.[J].Rep Prog Phys,198750:915.
[3] HILSCHER D;ROSSNER H.[J].Ann Phys(Paris),199217:471.
[4] SANDAL R;BEHERA B R;SINGH V.[J].Phys Rev C,201387:014604.
[5] HINDE D J;HILSCHER D;ROSSNER H.[J].Phys Rev C,199245:1229.
[6] BACK B B;BLUMENTHAL D J;DAVIDS C N.[J].Phys Rev C,199960:044602.
[7] SHIDLING P D;MADHAVAN N;RAMAMURTHY V S.[J].Phys Rev C,200674:064603.
[8] RAMACHANDRAN K;CHATTERJEE A;NAVIN A.[J].Phys Rev C,200673:064609.
[9] LESTONE J P;MCCALLA S G.[J].Phys Rev C,200979:044611.
[10] SINGH H;BEHERA B R;SINGH G.[J].Phys Rev C,200980:064615.
[11] MANCUSI D;CHARITY R J;CUGNON J.[J].Phys Rev C,201082:044610.
[12] FABRIS D;VIESTI G;FIORETTO E.[J].Phys Rev Lett,199473:2676.
[13] FR ¨OBRICH P.[J].Prog Theor Phys Suppl,2004154:279.
[14] WADA T;ABE Y;CARJAN N.[J].Phys Rev Lett,199370:3538.
[15] POMORSKI K;NERLO-POMORSKA B;SUROWIEC A.[J].Nucl Phys A,2000679:25.
[16] NADTOCHY P N;ADEEV G D;KARPOV A V.[J].Phys Rev C,200265:064615.
[17] YE W;YANG H W;WU F.[J].Phys Rev C,200877:011302.
[18] YE W.[J].Phys Lett B,2009681:413.
[19] SADHUKHAN J;PAL S.[J].Phys Rev C,200878:011603(R).
[20] MIRFATHI S M;PAHLAVANI M R.[J].Phys Rev C,200878:064612.
[21] WANG N;YE W.[J].Phys Rev C,201378:051601(R).
[22] FR ¨OBRICH P;GONTCHAR I I.[J].Phys Rep,1998292:131.
[23] FR ¨OBRICH P.[J].Nucl Phys A,2007787:170c.
[24] SIERK A J.[J].Phys Rev C,198633:2039.
[25] M ¨OLLERP;MY-ERS W D;SWIATECKI W J.[J].At Data & Nucl Data Tables,198839:225.
[26] IGNATYUK A V;ITKIS M G;OKOLOVICH V N.[J].Sov J Nucl Phys,197521:612.
[27] GONTCHAR I I;FR ¨OBRICH P;PISCHASOV N I.[J].Phys Rev C,199347:2228.
[28] BLANN M.[J].Phys Rev C,198021:1770.
[29] LAZAREV YU A;GONTCHAR I I;MAVLITOV N D.[J].Phys Rev Lett,199370:1220.
[30] SCHMITT C;SCHMIDT K H;KELI ′CA.[J].Phys Rev C,201081:064602.
[31] JURADO B;SCHMITT C;SCHMIDT K H.[J].Phys Rev Lett,200493:072501.
[32] BENLLIURE J;CASAREJOS E;PEREIRA J.[J].Phys Rev C,200674:014609.
[33] LOTT B;GOLDENBAUM F;BOHM A.[J].Phys Rev C,200163:034616.
[34] JAHNKE U;BOHNE W;EGIDY T.[J].Phys Rev Lett,199983:4959.
[35] YE W.[J].Phys Rev C,201285:011601(R).
[36] YE W.[J].Phys Rev C,200980:011601(R).
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%