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September 21, 2025Monthly Notices of the Royal Astronomical Society2 citationsOpen Access

Late-afterglow Emission from a Quasi-spherical Outflow in a stratified environment

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NFN. FraijaBKB. Betancourt KamenetskaiaAGA Galván

Key Points

  • Gamma-ray bursts release energy through quasi-spherical outflows, radiating electromagnetic signals.
  • Analysis of 11 GRB afterglows shows stronger evidence for constant-density environments over others.
  • A new analytical model captures synchrotron afterglow scenarios, including self-absorption and stratified density effects.
  • Findings are relevant for understanding complex GRB interactions with stellar winds and neutron star mergers.

Abstract

Abstract Gamma-ray bursts (GRBs) are cosmic events occurring at large distances beyond our galaxy. They provide a unique opportunity to study electromagnetic patterns not seen elsewhere. When the collimated GRB outflow interacts with the outer layers of a star or the wind generated by a binary neutron star merger, it releases energy, forming a quasi-spherical outflow around it. This broad outflow begins to radiate once it has transferred enough energy to the surrounding medium. We have developed a new analytical model that describes the synchrotron afterglow scenario of the quasi-spherical outflow, including factors such as stratified density, self-absorption regime, and the fraction of electrons accelerated by the shock front. We also successfully describe the multiwavelength observations of a sample of llGRB afterglows (GRB 980425, 031203, 060218, 100316D, 130603B, 150101B and 171205A) that exhibited a late component, analyzed in both stellar wind and constant-density environments. Our analysis shows that a constant-density environment is favored. Additionally, we consider the multiwavelength upper limits of the short bursts reported in the Swift-BAT database.

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Cite This Study

Fraija et al. (2025) studied this question.

synapsesocial.com/papers/68d46cbf31b076d99fa68911https://doi.org/10.1093/mnras/staf1595
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