论文标题

热中子诱导的$^{235} $ u和$^{239} $ pu裂变反应的动能分布

Kinetic Energy Distribution of Fragments for Thermal Neutron-Induced $^{235}$U and $^{239}$Pu Fission Reactions

论文作者

Sun, Xiaojun, Peng, Haiyuan, Xie, Liying, Zhang, Kai, Liang, Yan, Han, Yinlu, Su, Nengchuan, Yan, Jie, Xiao, Jun, Sun, Junjie

论文摘要

提出了围绕一对主要裂变片段的大量互补对的产生和演变,提出了核和统计模型(DSM)。 (1)假定裂隙核沿​​对称同轴伸长,直到将其分解为两个主要的裂变片段。 (2)近似描述为两个椭圆形的互补对片段,在分裂力矩时变形较大。 (3)每个主要片段中的每个互补对中的动能主要由库仑排斥力提供,库仑排斥通过严格的六维积分来明确表达。 (4)仅获得三个现象学系数来全局地描述$^{235} $ u($ n_ {th},f $),$^{239} $ pu($ n_ {th},f $)反应的基础,构成共同的数据,构成质量数据,构成量的分布,以分布的量,以分布的量,以$^{235} $ u($^{235} $ u($^{235} $ u($^{235} $ u($ n_ {th},f $),构成共同数据,分布。在DSM的框架中,显式平均总动能分布$ \ OVERLINE {TKE}(a)$和平均动能分布$ \ OVERLINE {KE}(a)$始终代表。本文的理论结果与实验数据非常吻合。此外,该模型被预期为通常评估热中子诱导肌动剂裂变的相应观察的可靠方法。

Focused on the generation and evolution of vast complementary pairs of the primary fission fragments at scission moment, Dinuclear and Statistical Model (DSM) is proposed. (1) It is assumed that the fissile nucleus elongates along a symmetric coaxis until it breaks into two primary fission fragments. (2) Every complementary pair of the primary fission fragments is approximatively described as two ellipsoids with large deformation at scission moment. (3) The kinetic energy in every complementary pair of the primary fragments is mainly provided by Coulomb repulsion, which is explicitly expressed through strict six-dimensional integrals. (4) Only three phenomenological coefficients are obtained to globally describe the quadrupole deformation parameters of arbitrary primary fragments both for $^{235}$U($n_{th}, f$) and $^{239}$Pu($n_{th}, f$) reactions, on the basis of the common characteristics of the measured data, such as mass and charge distributions, kinetic energy distributions. In the framework of DSM, the explicit average total kinetic energy distribution $\overline{TKE}(A)$ and the average kinetic energy distribution $\overline{KE}(A)$ are consistently represented. The theoretical results in this paper agree well with the experimental data. Furthermore, this model is expected as the reliable approach to generally evaluate the corresponding observebles for thermal neutron-induced fission of actinides.

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