论文标题

中等依赖性相对论NN潜力:应用于融合动力学

Medium dependent relativistic NN potential: Application to the fusion dynamics

论文作者

Bhuyan, Mrutunjaya, Rana, Shilpa, Jain, Nishu, Kumar, Raj, Patra, Suresh Kumar, Carlson, B. V.

论文摘要

在相对论 - hartree-bogoliubov(RHB)方法中密度依赖性的核素 - 梅森耦合方面,在有效的核子核子(NN)相互作用的有效核素 - 核子(NN)相互作用的潜在效应的微观描述中引入了中等效应。在相对论均值均值接近和密度依赖性的DDME1和DDME2参数集中,在相对论的均值接近方法中,获得了相互作用的NL3 $^*$和TM1参数集的相互作用核和NN电位的核密度。 DDR3Y NN电位和密度用于通过采用双重折叠方法来获得核电位。该核电位进一步用于探测$ \ ell- $汇总的Wong模型中的融合动力学,用于几个{\ IT甚至连的系统,从而形成了光,沉重和超重的核。还针对比较的相对论R3Y,密度依赖性和独立的M3Y相互作用电位进行了计算。我们观察到,与非权利性M3Y和DDM3Y NN电位相比,DDR3Y NN势可以更好地与实验数据重叠。从R3Y和DDR3Y相互作用的比较中,可以表明,在密度依赖性核定 - 膜耦合方面包含中等效应可提高融合屏障,从而减少融合和/或捕获横截面。此外,观察到核密度以及针对NL3 $^*$参数集获得的相对论R3Y nn潜力,可为实验数据提供相对较好的拟合。

In-medium effects are introduced in the microscopic description of the effective nucleon-nucleon (NN) interaction potential entitled DDR3Y in terms of the density-dependent nucleon-meson couplings within the Relativistic-Hartree-Bogoliubov (RHB) approach. The nuclear densities of the interacting target and projectile nuclei and NN potentials are obtained for non-linear NL3$^*$ and TM1 parameter sets within the relativistic mean-field approach and density-dependent DDME1 and DDME2 parameter sets within the Relativistic-Hartree-Bogoliubov (RHB) formalism. The DDR3Y NN potential and the densities are used to obtain the nuclear potential by adopting the double folding approach. This nuclear potential is further used to probe the fusion dynamics within the $\ell-$summed Wong model for a few {\it even-even} systems leading to the formation of light, heavy and superheavy nuclei. The calculations are also performed for the relativistic R3Y, density-dependent and independent M3Y interaction potentials for the comparison. We observed that the DDR3Y NN potential gives a better overlap with the experimental data as compared to non-relativistic M3Y and DDM3Y NN potentials. From the comparison of R3Y and DDR3Y interactions, it is manifested that the inclusion of in-medium effects in terms of density-dependent nucleon-meson couplings raises the fusion barrier and consequently decreases the fusion and/or capture cross-section. Moreover, the nuclear densities, as well as the relativistic R3Y NN potential obtained for the NL3$^*$ parameter set, are observed to give a comparatively better fit to the experimental data.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源