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GRB 221009A: Discovery of an Exceptionally Rare Nearby and Energetic Gamma-Ray Burst

Title: GRB 221009A: Discovery of an Exceptionally Rare Nearby and Energetic Gamma-Ray Burst
Authors: MA Williams; JA Kennea; S Dichiara; K Kobayashi; WB Iwakiri; AP Beardmore; PA Evans; S Heinz; A Lien; SR Oates; H Negoro; SB Cenko; DJK Buisson; DH Hartmann; GK Jaisawal; NPM Kuin; S Lesage; KL Page; T Parsotan; DR Pasham; B Sbarufatti; MH Siegel; S Sugita; G Younes; E Ambrosi; Z Arzoumanian; MG Bernardini; S Campana; M Capalbi; R Caputo; A D’Aì; P D’Avanzo; V D’Elia; M De Pasquale; RAJ Eyles-Ferris; E Ferrara; KC Gendreau; JD Gropp; N Kawai; N Klingler; S Laha; A Melandri; T Mihara; M Moss; P O’Brien; JP Osborne; DM Palmer; M Perri; M Serino; E Sonbas; M Stamatikos; R Starling; G Tagliaferri; A Tohuvavohu; S Zane; H Ziaeepour
Publication Year: 2023
Collection: University of Leicester: Figshare
Subject Terms: Uncategorised value
Description: We report the discovery of the unusually bright long-duration gamma-ray burst (GRB), GRB 221009A, as observed by the Neil Gehrels Swift Observatory (Swift), Monitor of All-sky X-ray Image, and Neutron Star Interior Composition Explorer Mission. This energetic GRB was located relatively nearby (z = 0.151), allowing for sustained observations of the afterglow. The large X-ray luminosity and low Galactic latitude (b = 4.°3) make GRB 221009A a powerful probe of dust in the Milky Way. Using echo tomography, we map the line-of-sight dust distribution and find evidence for significant column densities at large distances (≳10 kpc). We present analysis of the light curves and spectra at X-ray and UV-optical wavelengths, and find that the X-ray afterglow of GRB 221009A is more than an order of magnitude brighter at T 0 + 4.5 ks than that from any previous GRB observed by Swift. In its rest frame, GRB 221009A is at the high end of the afterglow luminosity distribution, but not uniquely so. In a simulation of randomly generated bursts, only 1 in 104 long GRBs were as energetic as GRB 221009A; such a large E γ,iso implies a narrow jet structure, but the afterglow light curve is inconsistent with simple top-hat jet models. Using the sample of Swift GRBs with redshifts, we estimate that GRBs as energetic and nearby as GRB 221009A occur at a rate of ≲1 per 1000 yr—making this a truly remarkable opportunity unlikely to be repeated in our lifetime.
Document Type: article in journal/newspaper
Language: unknown
Relation: 2381/22709956.v1
Availability: https://figshare.com/articles/journal_contribution/GRB_221009A_Discovery_of_an_Exceptionally_Rare_Nearby_and_Energetic_Gamma-Ray_Burst/22709956
Rights: CC BY 4.0
Accession Number: edsbas.DEBA4797
Database: BASE