Primordial Black Hole signatures from femtolensing and spectral fringe of Gamma Ray Bursts

Fuente: arXiv
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Main Authors: Dai, Chang-Yu, Tseng, Po-Yan
Format: Preprint
Published: 2026
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author Dai, Chang-Yu
Tseng, Po-Yan
author_facet Dai, Chang-Yu
Tseng, Po-Yan
contents Femtolensing of gamma-ray bursts (GRBs) is vastly studied to constrain primordial black holes lighter than $10^{-13}$ solar mass and may close the window for PBH dark matter. In this case, wave optics formalism is required and carefully implemented in our analysis. Incorporating the GRB observational data from Swift XRT, we perform the statistical analysis of PBH lensing, comparing it with the null hypothesis where the BAND model is used to parametrize the GRB spectrum. We found a few GRB data manifest the spectral fringe which characterizes the feature of femtolensing by PBHs, and the analysis shows moderate statistical preference in terms of goodness of fit. Conversely, since most of the fits to GRB spectral data do not improve with PBH lensing, we utilize this to obtain an upper bound on the PBH fractional abundance with respect to dark matter. However, the robust constraint cannot be achieved, unless the size of GRBs is smaller than $5\times 10^7$ m for PBH mass around $5\times 10^{-15}$ solar mass.
format Preprint
id arxiv_https___arxiv_org_abs_2602_06407
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Primordial Black Hole signatures from femtolensing and spectral fringe of Gamma Ray Bursts
Dai, Chang-Yu
Tseng, Po-Yan
High Energy Astrophysical Phenomena
High Energy Physics - Phenomenology
Femtolensing of gamma-ray bursts (GRBs) is vastly studied to constrain primordial black holes lighter than $10^{-13}$ solar mass and may close the window for PBH dark matter. In this case, wave optics formalism is required and carefully implemented in our analysis. Incorporating the GRB observational data from Swift XRT, we perform the statistical analysis of PBH lensing, comparing it with the null hypothesis where the BAND model is used to parametrize the GRB spectrum. We found a few GRB data manifest the spectral fringe which characterizes the feature of femtolensing by PBHs, and the analysis shows moderate statistical preference in terms of goodness of fit. Conversely, since most of the fits to GRB spectral data do not improve with PBH lensing, we utilize this to obtain an upper bound on the PBH fractional abundance with respect to dark matter. However, the robust constraint cannot be achieved, unless the size of GRBs is smaller than $5\times 10^7$ m for PBH mass around $5\times 10^{-15}$ solar mass.
title Primordial Black Hole signatures from femtolensing and spectral fringe of Gamma Ray Bursts
topic High Energy Astrophysical Phenomena
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2602.06407