Gamma-Ray and Neutrino Emissions from Starforming and Starburst Galaxies

A. Ambrosone, M. Chianese, D. Fiorillo, A. Marinelli, G. Miele
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Abstract

Experimental observations have demonstrated a strong correlation between the star formation rate and the gamma-ray lumosities of starforming and starburst galaxies (SFGs and SBGs). However, the real origin of these emissions is still under debate. In this contribution, we present several updates on their non-thermal radiations, revisiting both their point-like and cumulative (diffuse) emission properties. From the point-like side, we discuss the potential- ities of future neutrino (KM3NeT/ARCA, IceCube-gen2) telescopes to quanti- tively scrutinize their expected properties from different cosmic-ray transport models. From the diffuse perspective, we investigate a model based on a data- driven blending of spectral indexes, hence taking into account the changes in the properties of individual emitters. Strikingly, SFGs and SBGs can explain 25% (up to 40%) of the diffuse High-Energy Starting Events (HESE) data, without overshooting the gamma-ray limits regarding non-blazar sources.
恒星形成和星暴星系的伽马射线和中微子发射
实验观测表明,恒星形成速率与恒星形成星系和星暴星系(SFGs和SBGs)的伽马射线光度之间存在很强的相关性。然而,这些排放物的真正来源仍在争论中。在这篇文章中,我们提出了一些关于它们的非热辐射的更新,重新审视了它们的点状和累积(漫射)发射特性。从点状的一面,我们讨论了未来中微子(KM3NeT/ARCA, IceCube-gen2)望远镜的潜力,从不同的宇宙射线输运模型中定量地审视它们的预期性质。从漫射的角度来看,我们研究了一个基于数据驱动的光谱指数混合的模型,从而考虑了单个发射体性质的变化。引人注目的是,SFGs和SBGs可以解释25%(高达40%)的漫射高能起始事件(HESE)数据,而不会超过非耀变体源的伽马射线限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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