English

Positron Annihilation in the Galaxy

High Energy Astrophysical Phenomena 2019-03-14 v1

Abstract

The 511 keV line from positron annihilation in the Galaxy was the first γ\gamma-ray line detected to originate from outside our solar system. Going into the fifth decade since the discovery, the source of positrons is still unconfirmed and remains one of the enduring mysteries in γ\gamma-ray astronomy. With a large flux of \sim103^{-3} γ\gamma/cm2^{2}/s, after 15 years in operation INTEGRAL/SPI has detected the 511 keV line at >50σ>50\sigma and has performed high-resolution spectral studies which conclude that Galactic positrons predominantly annihilate at low energies in warm phases of the interstellar medium. The results from imaging are less certain, but show a spatial distribution with a strong concentration in the center of the Galaxy. The observed emission from the Galactic disk has low surface brightness and the scale height is poorly constrained, therefore, the shear number of annihilating positrons in our Galaxy is still not well know. Positrons produced in β+\beta^+-decay of nucleosynthesis products, such as 26^{26}Al, can account for some of the annihilation emission in the disk, but the observed spatial distribution, in particular the excess in the Galactic bulge, remains difficult to explain. Additionally, one of the largest uncertainties in these studies is the unknown distance that positrons propagate before annihilation. In this paper, we will summarize the current knowledge base of Galactic positrons, and discuss how next-generation instruments could finally provide the answers.

Keywords

Cite

@article{arxiv.1903.05569,
  title  = {Positron Annihilation in the Galaxy},
  author = {Carolyn A. Kierans and John F. Beacom and Steve Boggs and Matthew Buckley and Regina Caputo and Roland Crocker and Michael De Becker and Roland Diehl and Chris L. Fryer and Sean Griffin and Dieter Hartmann and Elizabeth Hays and Pierre Jean and Martin G. H. Krause and Tim Linden and Alexandre Marcowith and Pierrick Martin and Alexander Moiseev and Uwe Oberlack and Elena Orlando and Fiona Panther and Nikos Prantzos and Richard Rothschild and Ivo Seitenzahl and Chris Shrader and Thomas Siegert and Andy Strong and John Tomsick and W. Thomas Vestrand and Andreas Zoglauer},
  journal= {arXiv preprint arXiv:1903.05569},
  year   = {2019}
}

Comments

10 pages including 3 figures. Science White paper submitted to Astro2020

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