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Pulsars as the sources of high energy cosmic ray positrons

Journal of Cosmology and Astroparticle Physics · 2009 · Vol. 2009(01) · pp. 025–025
Dan HooperPasquale BlasiPasquale Dario Serpico

Abstract

Recent results from the PAMELA satellite indicate the presence of a large flux of positrons (relative to electrons) in the cosmic ray spectrum between approximately 10 and 100 GeV. As annihilating dark matter particles in many models are predicted to contribute to the cosmic ray positron spectrum in this energy range, a great deal of interest has resulted from this observation. Here, we consider pulsars (rapidly spinning, magnetized neutron stars) as an alternative source of this signal. After calculating the contribution to the cosmic ray positron and electron spectra from pulsars, we find that the spectrum observed by PAMELA could plausibly originate from such sources. In particular, a significant contribution is expected from the sum of all mature pulsars throughout the Milky Way, as well as from the most nearby mature pulsars (such as Geminga and B0656+14). The signal from nearby pulsars is expected to generate a small but significant dipole anisotropy in the cosmic ray electron spectrum, potentially providing a method by which the Fermi gamma-ray space telescope would be capable of discriminating between the pulsar and dark matter origins of the observed high energy positrons.

Dark Matter and Cosmic PhenomenaAstrophysics and Cosmic PhenomenaPulsars and Gravitational Waves ResearchPulsarPositronCosmic rayFermi Gamma-ray Space TelescopePAMELA detectorDark matterUltra-high-energy cosmic rayMilky WayElectron
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References
Review of Particle Physics
Physics Letters B · 2008 · 4,919 citations
Theory of pulsars - Polar caps, sparks, and coherent microwave radiation
The Astrophysical Journal · 1975 · 2,004 citations
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