...
首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >Role of nuclear structure degrees of freedom and energy dependent interaction potential in sub-barrier fusion dynamics
【24h】

Role of nuclear structure degrees of freedom and energy dependent interaction potential in sub-barrier fusion dynamics

机译:核结构自由度的作用和亚屏障融合动力学中的自由度和能量依赖性相互作用潜力

获取原文
获取原文并翻译 | 示例
           

摘要

The role of the nuclear structure degrees of freedom associated with the colliding nuclei and the energy dependence in the nucleus nucleus interaction potential in fusion dynamics of various projectiles (O-16, Al-27 and Cl-37) with the Ge-isotopes (Ge-74,Ge-76) has been investigated. Fusion cross-sections obtained through energy dependent interaction potential (EDWSP model) and coupled channel theory show quite similar behavior in near and above barrier energy regions. In coupled channel view, the couplings to inelastic surface excitations associated with the fusing nuclei results in large fusion enhancement at sub-barrier energies. The consideration of spherical shape for targets (Ge-74,Ge-76-isotopes) along with their relevant internal structure degrees of freedom in coupled channel approach is sufficient to get a good description to observed fusion enhancement of the studied reactions. In contrast, the energy dependent interaction potential modifies the barrier profile of interaction barrier and subsequently reduces the effective fusion barrier between the colliding systems, henceforth, predicts substantially large fusion enhancement at below barrier energies in comparison to the expectations of the one dimensional barrier penetration model. Furthermore, chi(2)-analysis and the ratio plots sigma(Th)/sigma(Exp) for outcomes of the EDWSP model suggested that the model calculations provide a consistent fit to fusion data within 10%. For the chosen reactions, only at 6 fusion data points out of 75 fusion data points does the deviation exceed 5% while 69 fusion data points lie within 5% and hence, the EDWSP model reasonably explained the above barrier fusion data within 5% with a probability more than 90%. (C) 2019 Elsevier B.V. All rights reserved.
机译:核结构自由度的作用与碰撞核和能量依赖于各种射弹(O-16,Al-27和Cl-37)的核心核相互作用电位与Ge-Isotopes(Ge -74,戈-76)进行了研究。通过能量依赖性相互作用电位(EDWSP模型)和耦合信道理论获得的融合横截面在近乎和上述屏障能量区域中显示出相似的行为。在耦合通道视图中,与融合核相关联的无弹性表面激发的联轴导致亚阻挡能量的大融合增强。对靶标的球形(GE-74,GE-76-同位素)的考虑以及其相关的耦合通道方法的相关内部结构自由度足以获得理想的描述,以观察到所研究的反应的融合增强。相反,能量依赖性相互作用电位改变相互作用屏障的阻挡曲线,随后与一维屏障渗透模型的期望相比,降低了碰撞系统之间的有效熔体,从而预测了低于屏障能量的基本大的融合增强。此外,Chi(2) - 分析和EDWSP模型结果的分析和比率Σ-Σ(exp)建议模型计算在10%以内的融合数据提供一致的拟合。对于所选反应,仅在75个融合数据点中的6个融合数据点,偏差超过5%而69融合数据点在5%内,因此,EDWSP模型合理地解释了上述屏障融合数据以内5%概率超过90%。 (c)2019 Elsevier B.v.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号