Constraining primordial black holes as dark matter using AMS-02 data

Fuente: arXiv
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Main Authors: Su, Bing-Yu, Pan, Xu, Wang, Guan-Sen, Zu, Lei, Yang, Yupeng, Feng, Lei
Format: Preprint
Published: 2024
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author Su, Bing-Yu
Pan, Xu
Wang, Guan-Sen
Zu, Lei
Yang, Yupeng
Feng, Lei
author_facet Su, Bing-Yu
Pan, Xu
Wang, Guan-Sen
Zu, Lei
Yang, Yupeng
Feng, Lei
contents Primordial black holes (PBHs) are the plausible candidates for the cosmological dark matter. Theoretically, PBHs with masses $M_{\rm PBH}$ in the range of $4\times10^{14}\sim 10^{17}\,{\rm g}$ can emit sub-GeV electrons and positrons through Hawking radiation. Some of these particles could undergo diffusive reacceleration during propagation in the Milky Way, potentially reaching energies up to the GeV level observed by AMS-02. In this work, we utilize AMS-02 data to constrain the PBH abundance $f_{\rm PBH}$ by employing the reacceleration mechanism. Under the assumption of a monochromatic PBH mass distribution, our findings reveal that the limit is stricter than that derived from Voyager 1 data. This difference is particularly pronounced when $M_{\rm PBH}\lesssim10^{15}\,{\rm g}$, exceeding an order of magnitude. The constraints are even more robust in a more realistic scenario involving a log-normal mass distribution of PBHs. Moreover, we explore the impact of varying propagation parameters and solar modulation potential within reasonable ranges, and find that such variations have minimal effects on the final results.
format Preprint
id arxiv_https___arxiv_org_abs_2403_04988
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Constraining primordial black holes as dark matter using AMS-02 data
Su, Bing-Yu
Pan, Xu
Wang, Guan-Sen
Zu, Lei
Yang, Yupeng
Feng, Lei
High Energy Astrophysical Phenomena
Cosmology and Nongalactic Astrophysics
High Energy Physics - Phenomenology
Primordial black holes (PBHs) are the plausible candidates for the cosmological dark matter. Theoretically, PBHs with masses $M_{\rm PBH}$ in the range of $4\times10^{14}\sim 10^{17}\,{\rm g}$ can emit sub-GeV electrons and positrons through Hawking radiation. Some of these particles could undergo diffusive reacceleration during propagation in the Milky Way, potentially reaching energies up to the GeV level observed by AMS-02. In this work, we utilize AMS-02 data to constrain the PBH abundance $f_{\rm PBH}$ by employing the reacceleration mechanism. Under the assumption of a monochromatic PBH mass distribution, our findings reveal that the limit is stricter than that derived from Voyager 1 data. This difference is particularly pronounced when $M_{\rm PBH}\lesssim10^{15}\,{\rm g}$, exceeding an order of magnitude. The constraints are even more robust in a more realistic scenario involving a log-normal mass distribution of PBHs. Moreover, we explore the impact of varying propagation parameters and solar modulation potential within reasonable ranges, and find that such variations have minimal effects on the final results.
title Constraining primordial black holes as dark matter using AMS-02 data
topic High Energy Astrophysical Phenomena
Cosmology and Nongalactic Astrophysics
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2403.04988