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Features in the Spectrum of Cosmic-Ray Positrons from Pulsars

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arxiv 1712.00011 v2 pith:NPBM57KQ submitted 2017-11-30 astro-ph.HE astro-ph.IMhep-ph

classification astro-ph.HEastro-ph.IMhep-ph
keywords positronsenergyfeaturespositronpulsarsspectrumcosmic-rayams-02
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Pulsars have been invoked to explain the origin of recently observed high-energy Galactic cosmic-ray positrons. Since the positron propagation distance decreases with energy, the number of pulsars that can contribute to the observed positrons decreases from $O(10^3)$ for positron energies $E\gtrsim10$ GeV to only a few for $E \gtrsim 500$ GeV. Thus, if pulsars explain these positrons, the positron energy spectrum should become increasingly bumpy at higher energies. Here we present a power-spectrum analysis that can be applied to seek such spectral features in the energy spectrum for cosmic-ray positrons and for the energy spectrum of the combined electron/positron flux. We account for uncertainties in the pulsar distribution by generating hundreds of simulated spectra from pulsar distributions consistent with current observational constraints. Although the current AMS-02 data do not exhibit evidence for spectral features, we find that such features would be detectable in $\simeq 10\%$ of our simulations, with 20 years of AMS-02 data or three years of DAMPE measurements on the electron-plus-positron flux.

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  1. SECRET: Stochasticity Emulator for Cosmic Ray Electrons

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    SECRET, a MADE-based conditional density emulator, reproduces and interpolates the joint distribution of stochastic cosmic-ray electron spectra across five transport parameters with few-percent quantile accuracy over ...

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