Dissipation of the tilting degree of freedom in heavy-ion-induced fission from four-dimensional Langevin dynamics

被引:14
|
作者
Nadtochy, P. N. [1 ]
Ryabov, E. G. [2 ]
Cheredov, A. V. [2 ]
Adeev, G. D. [2 ]
机构
[1] Omsk State Tech Univ, Mira Prospekt 11, Omsk 644050, Russia
[2] Omsk State Univ, Mira Prospekt 55-A, Omsk 644077, Russia
来源
EUROPEAN PHYSICAL JOURNAL A | 2016年 / 52卷 / 10期
基金
俄罗斯基础研究基金会;
关键词
FRAGMENT ANGULAR-DISTRIBUTIONS; ONE-BODY DISSIPATION; STOCHASTIC-MODEL; DIFFUSION-MODEL; EXCITED NUCLEI; WALL FORMULA; CHAOS; TRANSITION; MOMENTUM; SCISSION;
D O I
10.1140/epja/i2016-16308-6
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
A stochastic approach based on four-dimensional Langevin fission dynamics is applied to the calculation of a wide set of experimental observables of excited compound nuclei from Pb-199 to Cf-248 formed in reactions induced by heavy ions. In the model under investigation, the tilting degree of freedom (K coordinate) representing the projection of the total angular momentum onto the symmetry axis of the nucleus is taken into account in addition to three collective shape coordinates introduced on the basis of {c, h, alpha} parametrization. The evolution of the K coordinate is described by means of the Langevin equation in the overdamped regime. The friction tensor for the shape collective coordinates is calculated under the assumption of the modified version of the one-body dissipation mechanism, where the reduction coefficient k(s) of the contribution from the "wall" formula is introduced. The calculations are performed both for the constant values of the coefficient k(s) and for the coordinate-dependent reduction coefficient k(s)(q) which is found on the basis of the "chaos-weighted wall formula". Different possibilities of the deformation-dependent dissipation coefficient (gamma(K)) for the K coordinate are investigated. The presented results demonstrate that an impact of the k(s) and gamma(K) parameters on the calculated observable fission characteristics can be selectively probed. It was found that it is possible to describe the experimental data consistently with the deformation-dependent gamma(K)(q) coefficient for shapes featuring a neck, which predicts quite small values of gamma(K) = 0.0077 (MeV zs)(-1/2) and constant gamma(K) = 0.1-0.4 (MeV zs)(-1/2) for compact shapes featuring no neck.
引用
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页数:15
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