论文标题

使用最新的AMS-02数据检查宇宙射线上的二级产品起源

Examining the secondary product origin of cosmic ray positrons with the latest AMS-02 data

论文作者

Huang, Zhi-Qiu, Liu, Ruo-Yu, Joshi, Jagdish C., Wang, Xiang-Yu

论文摘要

Pamela和其他实验对宇宙射线(CR)正电子的分数的测量发现,相对于星际培养基中二级产生的标准预测,超过10 GEV(ISM)。尽管多余的建议是由某些主要来源引起的(例如脉冲质和/或消灭暗物质颗粒),但几乎持续的通量比为$ e^{+}/ \ bar {p} $所主张的是,替代性可能性与最高能量相互作用的替代性可能性是多种产物。最近,Yang \&Aharonian(2019)假设存在额外的Cr核源,从而重新审视了这种可能性。在这里,我们使用\ texttt {Dragon}代码检查了此次级产品方案,其中始终考虑了正上音的辐射损失。我们确认CR质子光谱和抗蛋白酶数据可以通过假设存在额外的CR来源来解释。但是,由于强烈的辐射冷却,相应的正电子光谱偏离了测得的数据高于100 GEV。这表明,尽管HADRONIC相互作用可以解释抗蛋白酶数据,但相应的二次正电子通量仍然不足以说明AMS数据。因此,某些主要正电子源(例如脉冲组织或暗物质)的贡献是不可忽略的。

Measurements of cosmic-ray (CR) positron fraction by PAMELA and other experiments have found an excess above 10 GeV relative to the standard predictions for secondary production in the interstellar medium (ISM). Although the excess has been mostly suggested to arise from some primary sources of positrons (such as pulsars and or annihilating dark matter particles), the almost constant flux ratio of $e^{+}/ \bar{p}$ argues for an alternative possibility that the excess positrons and antiprotons up to the highest energies are secondary products generated in hadronic interactions. Recently, Yang \& Aharonian (2019) revisit this possibility by assuming the presence of an additional population of CR nuclei sources. Here we examine this secondary product scenario using the \texttt{DRAGON} code, where the radiative loss of positrons is taken into account consistently. We confirm that the CR proton spectrum and the antiproton data can be explained by assuming the presence of an additional population of CR sources. However, the corresponding positron spectrum deviates from the measured data significantly above 100 GeV due to the strong radiative cooling. This suggests that, although hadronic interactions can explain the antiproton data, the corresponding secondary positron flux is still not enough to account for the AMS data. Hence contribution from some primary positron sources, such as pulsars or dark matter, is non-negligible.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源