English

Constraining positron emission from pulsar populations with AMS-02 data

High Energy Astrophysical Phenomena 2021-12-08 v2 High Energy Physics - Phenomenology

Abstract

The cosmic-ray flux of positrons is measured with high precision by the space-borne particle spectrometer AMS-02. The hypothesis that pulsar wind nebulae (PWNe) can significantly contribute to the excess of the positron (e+e^+) cosmic-ray flux has been consolidated after the observation of a γ\gamma-ray emission at TeV energies of a few degree size around Geminga and Monogem PWNe. In this work we undertake massive simulations of Galactic pulsars populations, adopting different distributions for their position in the Galaxy, intrinsic physical properties, pair emission models, in order to overcome the incompleteness of the ATNF catalog. We fit the e+e^+ AMS-02 data together with a secondary component due to collisions of primary cosmic rays with the interstellar medium. We find that several mock galaxies have a pulsar population able to explain the observed e+e^+ flux, typically by few, bright sources. We determine the physical parameters of the pulsars dominating the e+e^+ flux, and assess the impact of different assumptions on radial distributions, spin-down properties, Galactic propagation scenarios and e+e^+ emission time.

Keywords

Cite

@article{arxiv.2107.06300,
  title  = {Constraining positron emission from pulsar populations with AMS-02 data},
  author = {Luca Orusa and Silvia Manconi and Fiorenza Donato and Mattia Di Mauro},
  journal= {arXiv preprint arXiv:2107.06300},
  year   = {2021}
}

Comments

21 pages, 7 figures. Typos corrected, references added. Matches version published by JCAP

R2 v1 2026-06-24T04:09:57.633Z