论文标题
簇衰减的温度依赖性
Temperature dependence of cluster decay
论文作者
论文摘要
通过将UDL的半衰期拟合到在激发能量依赖性的双重折叠模型(DFM)中评估的udl半衰期(DFM)中,用于激发核的光簇衰减的通用衰减定律(UDL)。半衰期在预先形成的群集模型中评估。激发能依赖性既是通过相互作用核的密度分布的发射簇的能量和相互作用势中引入的。当父母和女儿核的激发能之间的差异($Δe^{*}> $ 0)增加时,发现半衰期会减少,而降低的数量级是$δe^{*} $的几个数量级。对于在极热环境以及高能性重型离子碰撞中形成的重元素的核合成计算可能非常重要。激发核的UDL用于提供热激发核的聚类衰减速率(例如R-Process核合成中产生的)的簇衰变速率的估计。
A universal decay law (UDL) for light cluster decay of excited nuclei is formulated by fitting the UDL half-lives to those evaluated within an excitation energy-dependent double folding model (DFM). The half-lives are evaluated within a preformed cluster model. The excitation energy dependence is introduced both in the energy of the emitted cluster and in the interaction potential through the density distributions of the interacting nuclei. The half-lives are found to decrease when the difference between the excitation energies of the parent and daughter nuclei, $ΔE^{*} > $ 0, increases, with the reduction being a few orders of magnitude for higher values of $ΔE^{*}$. This can be of importance for nucleosynthesis calculations of heavy elements formed in extremely hot environments, as well as in highly energetic heavy-ion collisions. The UDL for excited nuclei is used to provide an estimate of the enhancement in the cluster decay rates of thermally excited nuclei such as those produced in r-process nucleosynthesis.