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Exploring a cosmic-ray origin of the multiwavelength emission in M31

机译:探索M31中多波长发射的宇宙射线起源

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摘要

A recent detection of spatially extended gamma-ray emission in the central region of the Andromeda galaxy (M31) has led to several possible explanations being put forth, including dark matter annihilation and millisecond pulsars. Another possibility is that the emission in M31 can be accounted for with a purely astrophysical cosmic-ray (CR) scenario. This scenario would lead to a rich multiwavelength emission that can, in turn, be used to test it. Relativistic cosmic-ray electrons (CRe) in magnetic fields produce radio emission through synchrotron radiation, while x-rays and gamma rays are produced through inverse Compton scattering. Additionally, collisions of primary cosmic-ray protons (CRp) in the interstellar medium produce charged and neutral pions that then decay into secondary CRe (detectable through radiative processes) and gamma rays. Here, we explore the viability of a CR origin for multiwavelength emission in M31, taking into consideration three scenarios: a CR scenario dominated by primary CRe, one dominated by CRp and the resulting secondary CRe and gamma rays from neutral pion decay, and a final case in which both of these components exist simultaneously.We find that the multicomponent model is the most promising, and is able to fit the multiwavelength spectrum for a variety of astrophysical parameters consistent with previous studies of M31 and of cosmic-ray physics. However, the CR power injection implied by our models exceeds the estimated CR power injection from typical astrophysical cosmic-ray sources such as supernovae.
机译:最近在仙境的星系(M31)的中心区域中的空间延伸的伽马射线发射的检测导致了几种可能的解释,包括暗物质湮灭和毫秒脉冲。另一种可能性是M31中的发射可以用纯粹的天体物理宇宙射线(CR)情景算是。这种情况会导致丰富的多个波长发射,从而可以使用它来测试它。磁场中的相对论宇宙射线电子(CRE)通过同步辐射产生无线电发射,而X射线和伽马射线通过反康顿散射产生。另外,星际介质中的初级宇宙射线质子(CRP)的碰撞产生了带电和中性的π,然后产生腐蚀进入次级CRE(可通过辐射过程检测)和伽马射线。在这里,考虑到三种情况,我们探讨了M31中的多个波长发射的CR起源的可行性:由中继CRE主导的CR场景,由CRP和所得继发CRE和中性π衰减的γ射线为主导的CR场景,以及最终的辅助CRE和伽马射线。其中两种组分同时存在的情况。我们发现多组分模型是最有希望的,并且能够适合多个天体物理参数的多波长谱,与先前的M31和宇宙射线物理学的研究一致。然而,我们模型所暗示的Cr电力注入超过典型的天体物理宇宙射线源等估计的Cr电力注射,例如超新星。

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  • 来源
    《Physical review, D》 |2019年第1期|共16页
  • 作者单位

    Department of Physics University of California 1156 High Street Santa Cruz California 95064 USA;

    Department of Physics University of California 1156 High Street Santa Cruz California 95064 USA;

    Department of Physics University of California 1156 High Street Santa Cruz California 95064 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 粒子物理学;场论;
  • 关键词

    central; Andromeda; emission;

    机译:中央;andromeda;排放;

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