Relaxation of Energy Constraints for Positrons Generating the Galactic Annihilation Signal

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Main Authors: Das, Souradeep, Krumholz, Mark R., Crocker, Roland M., Siegert, Thomas, Eisenberger, Laura
Format: Preprint
Published: 2025
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_version_ 1866912408397676544
author Das, Souradeep
Krumholz, Mark R.
Crocker, Roland M.
Siegert, Thomas
Eisenberger, Laura
author_facet Das, Souradeep
Krumholz, Mark R.
Crocker, Roland M.
Siegert, Thomas
Eisenberger, Laura
contents Even 50 years after the discovery of a positron annihilation line from the inner Galaxy, no class of astrophysical sources has emerged as a definitive explanation for both the emission morphology and flux. Positrons produced by dark matter annihilation or decay have been proposed, but the mass of any such candidate is constrained by continuum $γ$-ray emission at energies $>511$ keV. Earlier analyses have claimed that this emission requires that the positrons have kinetic energies less than a few MeV at injection, disfavoring both much of the dark matter parameter space and many potential compact astrophysical source classes such as pulsars. However, these constraints were not based on a full forward model of the $γ$-ray line and continuum data, and did not marginalize over uncertainties about the relative angular distributions of the line and continuum. Here we describe an improved analysis that overcomes these limitations, and show that constraints on the injection energy are much weaker than previously claimed; even under conservative assumptions the data are consistent with initial energies up to $\sim 50$ MeV.
format Preprint
id arxiv_https___arxiv_org_abs_2506_00847
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Relaxation of Energy Constraints for Positrons Generating the Galactic Annihilation Signal
Das, Souradeep
Krumholz, Mark R.
Crocker, Roland M.
Siegert, Thomas
Eisenberger, Laura
High Energy Astrophysical Phenomena
Astrophysics of Galaxies
High Energy Physics - Phenomenology
Even 50 years after the discovery of a positron annihilation line from the inner Galaxy, no class of astrophysical sources has emerged as a definitive explanation for both the emission morphology and flux. Positrons produced by dark matter annihilation or decay have been proposed, but the mass of any such candidate is constrained by continuum $γ$-ray emission at energies $>511$ keV. Earlier analyses have claimed that this emission requires that the positrons have kinetic energies less than a few MeV at injection, disfavoring both much of the dark matter parameter space and many potential compact astrophysical source classes such as pulsars. However, these constraints were not based on a full forward model of the $γ$-ray line and continuum data, and did not marginalize over uncertainties about the relative angular distributions of the line and continuum. Here we describe an improved analysis that overcomes these limitations, and show that constraints on the injection energy are much weaker than previously claimed; even under conservative assumptions the data are consistent with initial energies up to $\sim 50$ MeV.
title Relaxation of Energy Constraints for Positrons Generating the Galactic Annihilation Signal
topic High Energy Astrophysical Phenomena
Astrophysics of Galaxies
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2506.00847