论文标题

三体力对可观察的弹性核子核子散射的影响

Impact of Three-Body Forces on Elastic Nucleon-Nucleus Scattering Observables

论文作者

Vorabbi, Matteo, Gennari, Michael, Finelli, Paolo, Giusti, Carlotta, Navrátil, Peter, Machleidt, Ruprecht

论文摘要

在先前的一系列论文中,我们研究了手性电位对弹性核定核核散射的构建显微镜光电位(OP)的适用性。 OP的最终表达是核子核子($ NN $)$ t $矩阵与目标的核密度之间的折叠积分。在这些计算中,$ nn $和三个努克莱伦($ 3N $)的手性相互作用用于目标密度,并且仅用于$ nn $ $ t $矩阵的$ nn $相互作用。这项工作的目的是迈向更一致的OP迈出的又一步,在OP的动态部分中也引入了$ 3N $的力量。在目前的工作中,这是近似于密度依赖的$ nn $相互作用,在费米球体上平均后获得的相互作用。实际上,在我们的型号中,$ 3N $ force是对用于计算$ nn $ $ $ t $矩阵的裸$ nn $相互作用的中等校正。即使以近似方式处理$ 3N $的力量,此方法也自然扩展了我们以前的OP模型,并可以直接比较我们当前和以前的结果。我们认为,作为案例研究,核子的弹性散射$^{12} $ c和$^{16} $ o。我们介绍了差分横截面的结果和弹丸能量不同值的自旋可观测值。根据与实验数据的比较以及我们先前模型的结果,我们评估了$ 3N $相互作用在OP的动态部分中的重要性。我们的分析表明,$ t $矩阵中$ 3N $ force的贡献对于差分横截面很小,对于旋转可观测值,特别是对于分析能力而言,它很可观。对散射观测值的手性扩展订单分析证实了我们在近隔到接头阶的临时结果的收敛,这是我们以前的工作中已经建立的。

In a previous series of papers we investigated the domain of applicability of chiral potentials to the construction of a microscopic optical potential (OP) for elastic nucleon-nucleus scattering. The final expression of the OP was a folding integral between the nucleon-nucleon ($NN$) $t$ matrix and the nuclear density of the target. In these calculations $NN$ and three-nucleon ($3N$) chiral interactions were used for the target density and only the $NN$ interaction for the $NN$ $t$ matrix. The purpose of this work is to achieve another step towards the calculation of a more consistent OP introducing the $3N$ force also in the dynamic part of the OP. In the present work this is approximated with a density dependent $NN$ interaction obtained after the averaging over the Fermi sphere. In practice, in our model the $3N$ force acts as a medium correction of the bare $NN$ interaction used to calculate the $NN$ $t$ matrix. Even if the $3N$ force is treated in an approximate way, this method naturally extends our previous model of the OP and allows a direct comparison of our present and previous results. We consider as case studies the elastic scattering of nucleons off $^{12}$C and $^{16}$O. We present results for the differential cross section and the spin observables for different values of the projectile energy. From the comparison with the experimental data and with the results of our previous model we assess the importance of the $3N$ interaction in the dynamic part of the OP. Our analysis indicates that the contribution of the $3N$ force in the $t$ matrix is small for the differential cross section and it is sizable for the spin observables, in particular, for the analyzing power. A chiral expansion order-by-order analysis of the scattering observables confirms the convergence of our results at the next-to-next-to-next-to-leading-order, as already established in our previous work.

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