Boschini M J, Della Torre S, Gervasi M, Grandi D, Jøhannesson G, La Vacca G, Masi N, Moskalenko I V, Pensotti S, Porter T A, Quadrani L, Rancoita P G, Rozza D, Tacconi M
INFN, Milano-Bicocca, Milano, Italy.
CINECA, Segrate, Milano, Italy.
Astrophys J. 2020 Feb 1;889(2). doi: 10.3847/1538-4357/ab64f1. Epub 2020 Feb 4.
Local interstellar spectra (LIS) of secondary cosmic-ray (CR) nuclei, lithium, beryllium, boron, and partially secondary nitrogen, are derived in the rigidity range from 10 MV to ~200 TV using the most recent experimental results combined with state-of-the-art models for CR propagation in the Galaxy and in the heliosphere. The lithium spectrum appears somewhat flatter at high energies compared to other secondary species, which may imply a primary lithium component. Two propagation packages, GALPROP and HelMod, are combined to provide a single framework that is run to reproduce direct measurements of CR species at different modulation levels, and at both polarities of the solar magnetic field. An iterative maximum-likelihood method is developed that uses GALPROP-predicted LIS as input to HelMod, which provides the modulated spectra for specific time periods of the selected experiments for the model-data comparison. The proposed LIS accommodates the low-energy interstellar spectra measured by 1, the -3), and the Cosmic Ray Isotope Spectrometer on board of the Advanced Composition Explorer (/CRIS), as well as the high-energy observations by the Payload for Antimatter Matter Exploration and Light-nuclei Astrophysics (PAMELA), Alpha Magnetic Spectrometer-02 (AMS-02), and earlier experiments that are made deep in the heliosphere. The interstellar and heliospheric propagation parameters derived in this study are consistent with our earlier results for propagation of CR protons, helium, carbon, oxygen, antiprotons, and electrons.
利用最新实验结果,结合银河系和日球层中宇宙射线(CR)传播的先进模型,在10 MV至约200 TV的刚度范围内推导了次级宇宙射线(CR)核、锂、铍、硼以及部分次级氮的本地星际光谱(LIS)。与其他次级物种相比,锂光谱在高能时显得较为平坦,这可能意味着存在初级锂成分。将两个传播程序包GALPROP和HelMod结合起来,提供一个单一框架,运行该框架以再现不同调制水平以及太阳磁场两种极性下CR物种的直接测量结果。开发了一种迭代最大似然方法,该方法使用GALPROP预测的LIS作为HelMod的输入,HelMod为所选实验的特定时间段提供调制光谱用于模型-数据比较。所提出的LIS与先进成分探测器(/CRIS)上的1、-3)和宇宙射线同位素光谱仪测量的低能星际光谱以及反物质物质探索和轻核天体物理学(PAMELA)、阿尔法磁谱仪-02(AMS-02)的高能观测结果以及在日球层深处进行的早期实验结果相符合。本研究中推导的星际和日球层传播参数与我们早期关于CR质子、氦、碳、氧、反质子和电子传播的结果一致。