论文标题

来自AMS-02 F/SI数据和氟源丰度的传输参数

Transport parameters from AMS-02 F/Si data and fluorine source abundance

论文作者

Bueno, E. Ferronato, Derome, L., Génolini, Y., Maurin, D., Tatischeff, V., Vecchi, M.

论文摘要

AMS-02协作最近发布了前所未有的精度宇宙射线f/si数据。宇宙射线(CR)氟主要是由较重的祖细胞碎片产生的,而硅则主要在源头加速。因此,该比率对Cr传播最大敏感。我们研究了从f/si比的兼容性与从打火机(li,be,b)/c比率获得的传输参数。我们还检查了F的Cr源丰度,F的CR源丰度是少数具有高第一电离潜力但仅挥发性的元素之一,并且是研究CRS加速度机制的潜在关键要素。我们使用在USINE代码中实现的1D扩散模型,并执行$χ^2 $分析,分析了几种系统效应(数据,核横截面和太阳调制不确定性的能量相关性)。我们还利用EXFOR核数据库为其最重要的祖细胞(确定为56FE,32S,28SI,27AL,27AL,24mg,22ne和20ne)更新F生产横截面。从AMS-02 F/SI数据获得的传输参数与从AMS-02(LI,BE,B)/C数据获得的传输参数兼容。所有这些比率的综合拟合都导致CHI2/DOF $ \约1.1 $,其中B和F生产横截面的$ \ lyssim 10 \%$调整(后者是基于很少的核数据点,并且将从新的测量中受益匪浅)。 f/si比与F的纯次级起源兼容,具有最佳的相对源丰度(19f/28si)$ \ sim 10^{ - 3} $,上限为$ \ sim 5 \ sim 5 \ times 10^{ - 3} $。不幸的是,此极限不足以测试Cr核的全局加速模型,对于$ \ sim 10^{ - 4} $的级别的值。在几十台电视上,可以使用几百分之几的f/si数据来达到这样的水平,这可能是下一代CR实验的范围。

The AMS-02 collaboration recently released cosmic-ray F/Si data of unprecedented accuracy. Cosmic-ray (CR) fluorine is predominantly produced by fragmentation of heavier progenitors, while silicon is mostly accelerated at source. This ratio is thus maximally sensitive to CR propagation. We study the compatibility of the transport parameters derived from the F/Si ratio with those obtained from the lighter (Li,Be,B)/C ratios. We also inspect the CR source abundance of F, one of the few elements with a high first ionisation potential but only moderately volatile, and a potentially key element to study the acceleration mechanism of CRs. We use the 1D diffusion model implemented in the USINE code and perform $χ^2$ analyses accounting for several systematic effects (energy correlations in data, nuclear cross sections and solar modulation uncertainties). We also take advantage of the EXFOR nuclear database to update the F production cross sections for its most important progenitors (identified to be 56Fe, 32S, 28Si, 27Al, 24Mg, 22Ne, and 20Ne). The transport parameters obtained from AMS-02 F/Si data are compatible with those obtained from AMS-02 (Li,Be,B)/C data. The combined fit of all these ratios leads to a chi2/dof$\approx 1.1$, with $\lesssim 10\%$ adjustments of the B and F production cross sections (the latter are based on very few nuclear data points, and would strongly benefit from new measurements). The F/Si ratio is compatible with a pure secondary origin of F, with a best-fit relative source abundance (19F/28Si)$\sim 10^{-3}$ and an upper limit of $\sim 5\times 10^{-3}$. Unfortunately, this limit is not sufficient to test global acceleration models of CR nuclei, for which values at the level of $\sim 10^{-4}$ are required. Such levels could be attained with F/Si data of a few percent accuracy at a few tens of TV, possibly within reach of the next generation of CR experiments.

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