论文标题
格林的功能淘汰形式主义
Green's Function Knockout Formalism
论文作者
论文摘要
敲除核反应,其中与另一个核发生碰撞后,从核中取出核子,已被广泛用作实验工具,既可以从稳定性中进一步去除同位素,又可以获取有关核谱的单粒子性质的信息。为了充分利用实验信息,需要理论来描述所涉及的核的结构以及与核子去除机制相关的动力学。使用理论壳模型光谱因子用于结构描述的标准方法与反应的艾科尼尔模型相结合,在去除接近稳定性的核中的价核的背景下,已成功使用。但是,有人认为,在外来核的情况下,可能需要重新审视反应理论,更具体地说是去除缺乏物种(中子或质子)的高度不对称核。我们在这里提出了一种新的形式主义,用于通过敲除和转移反应,用于核能解析和 - 增添反应,该反应使用分散光势来始终如一地处理和反应性能。特别是,我们的形式主义包括与从弹丸中取出中子有关的动力学效应,这可能解释了核中核对因子在极端中子与蛋白酶比率中的光谱因子的长期难题。
Knockout nuclear reactions, in which a nucleon is removed from a nucleus as a result of the collision with another nucleus, have been widely used as an experimental tool, both to populate isotopes further removed from stability, and to obtain information about the single-particle nature of the nuclear spectrum. In order to fully exploit the experimental information, theory is needed for the description of both the structure of the nuclei involved, and the dynamics associated with the nucleon removal mechanisms. The standard approach, using theoretical shell-model spectroscopic factors for the structure description coupled with an eikonal model of reaction, has been successful when used in the context of the removal of valence nucleons in nuclei close to stability. However, it has been argued that the reaction theory might need to be revisited in the case of exotic nuclei, more specifically for highly asymmetric nuclei in which the deficient species (neutrons or protons) is being removed. We present here a new formalism for the nucleon-removal and -addition reaction through knockout and transfer reactions, that treats consistently structure and reaction properties using dispersive optical potentials. In particular, our formalism includes the dynamical effects associated with the removal of a neutron from the projectile, which might explain the long standing puzzle of the quenching of spectroscopic factors in nuclei with extreme neutrons-to-protons ratios.