关于未解明脉冲星对超高能银河漫射伽马射线发射的贡献

Samy Kaci, Gwenael Giacinti and Dmitri Semikoz
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引用次数: 0

摘要

超高能(UHE)银河弥漫伽马射线辐射蕴含着宇宙射线在银河系传播的重要信息。然而,它的测量结果受到了未解决源的污染,而未解决源的贡献尚不清楚。在这封信中,我们根据澳大利亚望远镜国家设施和LHAASO星表中的信息,对未解决的脉冲星风星云和TeV晕的贡献提出了一个新的数据驱动的估计。我们发现,在银河系内部,当所有与脉冲星相关的源都作为未解决源贡献时,这一贡献仅限于LHAASO在20 TeV以下测量到的漫射通量的38%±10%,而在100 TeV以上,这一比例下降到不到21%±6%。在银河系外围,这一贡献始终处于次主导地位。特别是,在 10 TeV 时,它最多达到 ∼18% ± 2%,在 ∼25 TeV 以上则小于 ∼7% ± 1%。我们的结论是,超高辐射银河弥漫伽马射线辐射不可能是由几十TeV以上的未分辨脉冲星源主导的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Contribution of Unresolved Pulsars to the Ultra-high-energy Galactic Diffuse Gamma-Ray Emission
The ultra-high-energy (UHE) Galactic diffuse gamma-ray emission holds important information on the propagation of cosmic rays in the Galaxy. However, its measurements suffer from a contamination from unresolved sources whose contribution remains unclear. In this Letter, we propose a novel data-driven estimate of the contribution of unresolved pulsar wind nebulae and TeV halos based on the information present in the Australia Telescope National Facility and the LHAASO catalogs. We find that in the inner Galaxy, this contribution is limited to ∼38% ± 10% of the diffuse flux measured by LHAASO at ∼20 TeV in the case where all sources associated to pulsars contribute as unresolved sources, and this fraction drops to less than 21% ± 6% above 100 TeV. In the outer Galaxy, this contribution is always subdominant. In particular, it reaches at most ∼18% ± 2% at 10 TeV and is less than ∼7% ± 1% above ∼25 TeV. We conclude that the UHE Galactic diffuse gamma-ray emission cannot be dominated by unresolved pulsar sources above a few tens of TeV.
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