论文标题

AMS-02(LI,BE,B)/C,N/O,3HE和4HE数据的组合分析

Combined analysis of AMS-02 (Li,Be,B)/C, N/O, 3He, and 4He data

论文作者

Weinrich, Nathanael, Génolini, Yoann, Boudaud, Mathieu, Derome, Laurent, Maurin, David

论文摘要

AMS-02实验测量了几个次要主要比率,从而实现了银河宇宙射线运输的详细研究。我们使用其他次级与主要比率来限制先前得出的基准场景(仅基于AMS-02 B/C数据),以测试运输的通用性和低差异扩散断裂的存在。我们使用USINE的1D薄盘/厚光环传播模型,以及$χ^2 $最小化,这是错误的协方差矩阵(AMS-02 Systemsics)和滋扰参数(跨区域和太阳调制不确定性)。 AMS-02 LI/C,BE/C和B/C的组合分析增强了$δ= 0.50 \ pm 0.03 $的扩散坡度,而GV刚度的扩散系数的较低尺寸断裂或上流。我们的简单模型可以成功地重现所有考虑的数据(LI/C,BE/C,B/C,N/O和3HE/4HE),尽管仍然存在几个问题:(i)定量一致性取决于对AMS-02数据系统的不当约束相关长度的假设; (ii)组合分析对生产横截面非常敏感,我们发现拟合后值与$ \ sim5-15 \%$不同于其最可能的值(大致在当前估计的核不确定性范围内); (iii)参数空间的两个非常不同的区域保持可行,要么具有重新计算和对流,要么是纯粹的扩散运输。为了完全利用AMS-02数据的合并分析,需要更好的核数据和更好的数据系统能量相关性。急切地等待着较重物种的AMS-02数据,以进一步探索宇宙射线传播方案。

The AMS-02 experiment measured several secondary-to-primary ratios enabling a detailed study of Galactic cosmic-ray transport. We constrain previously derived benchmark scenarios (based on AMS-02 B/C data only) using other secondary-to-primary ratios, to test the universality of transport and the presence of a low-rigidity diffusion break. We use the 1D thin disc/thick halo propagation model of USINE and a $χ^2$ minimisation accounting for a covariance matrix of errors (AMS-02 systematics) and nuisance parameters (cross-sections and solar modulation uncertainties). The combined analysis of AMS-02 Li/C, Be/C, and B/C strengthens the case for a diffusion slope of $δ=0.50\pm 0.03$ with a low-rigidity break or upturn of the diffusion coefficient at GV rigidities. Our simple model can successfully reproduce all considered data (Li/C, Be/C, B/C, N/O, and 3He/4He), although several issues remain: (i) the quantitative agreement depends on the assumptions made on the not well constrained correlation lengths of AMS-02 data systematics; (ii) combined analyses are very sensitive to production cross sections, and we find post-fit values differing by $\sim5-15\%$ from their most likely values (roughly within currently estimated nuclear uncertainties); (iii) two very distinct regions of the parameter space remain viable, either with reacceleration and convection, or with purely diffusive transport. To take full benefit of combined analyses of AMS-02 data, better nuclear data and a better handle on energy correlations in the data systematic are required. AMS-02 data on heavier species are eagerly awaited to further explore cosmic-ray propagation scenarios.

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