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Discovery and analysis of afterglows from poorly localized GRBs with the Gravitational-wave Optical Transient Observer (GOTO) All-sky Survey

2Citations signalées, ce qui n’est pas une note de qualité
70Institutions déclarées
18Pays d’affiliation déclarés

Rattachement africain : gb, fr, au, dk, nl, us, it, jp, cn, se, es, th, fi, ie, ru, cl, sk, ge. Niveau de preuve : code pays fourni par la source.

Le résumé fourni par la source

ABSTRACT Gamma-ray bursts (GRBs), particularly those detected by wide-field instruments such as the Fermi/GBM, pose challenges for optical follow-up because of their large initial localization regions, leaving many GRBs without identified afterglows. The Gravitational-wave Optical Transient Observer (GOTO), with its wide field of view, dual-site coverage, and robotic rapid-response capability, bridges this gap by rapidly identifying and localizing afterglows from alerts issued by space-based facilities including Fermi, SVOM, Swift, and the EP, providing early optical positions for coordinated multiwavelength follow-up. In this paper, we present optical afterglow localization and multiband follow-up of five Fermi/GBM (240619A, 240910A, 240916A, 241002B, and 241228B) and two MAXI/GSC (240122A and 240225B) triggered long GRBs discovered by GOTO in 2024. Spectroscopy for six GRBs (no spectroscopy for GRB 241002B) with VLT/X-shooter and GTC/OSIRIS yields precise redshifts spanning $z\approx 0.40$–3.16 and absorption-line diagnostics of hosts and intervening systems. Radio detections for four events (240122A, 240619A, 240910A, and 240916A) confirm the presence of long-lived synchrotron emission. Prompt-emission analysis with Fermi and MAXI data reveals a spectrally hard population, with two bursts lying $>3\sigma$ above the Amati relation. Although their optical afterglows resemble those of typical long GRBs, the prompt spectra are consistently harder than the long-GRB average. Broad-band afterglow modelling of six GOTO-discovered GRBs yields jet half-opening angles of a few degrees and beaming-corrected kinetic energies $E_{\rm jet}\sim 10^{51}$–$10^{52}$ erg, consistent with the canonical long-GRB population. These findings suggest that optical discovery of poorly localized GRBs is likely subject to observational biases favouring luminous events with high spectral peak energy ($E_{\rm p}$), while also providing insight into jet microphysics and central engine diversity.

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Discovery and analysis of afterglows from poorly localized GRBs with the Gravitational-wave Optical Transient Observer (GOTO) All-sky Survey
Date Crossref
03/10/2025
Éditeur
Oxford University Press (OUP)
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

Les institutions déclarées

Royal Holloway University of LondonUniversity of WarwickUniversity of BirminghamCentre National de la Recherche ScientifiqueAix-Marseille UniversitéMonash UniversityUniversité Paris CitéCommissariat à l'Énergie Atomique et aux Énergies AlternativesUniversité Paris-SaclayAstrophysique, Instrumentation et ModélisationCEA Paris-SaclayUniversity of LeicesterCommonwealth Scientific and Industrial Research OrganisationThe University of SydneyARC Centre of Excellence for Gravitational Wave DiscoveryAstronomy and SpaceUniversity of CopenhagenRadboud University NijmegenDawn Research (United States)DAWN Center for Independent LivingPhysical Sciences (United States)University of SheffieldBrera Astronomical ObservatoryAoyama Gakuin UniversityYunnan UniversityChinese Academy of SciencesNational Astronomical ObservatoriesGuangxi UniversityArmagh Observatory & PlanetariumInstitute for Globally Distributed Open Research and EducationInstituto de Astrofísica de CanariasNational Astronomical Research Institute of ThailandUniversity of TurkuUniversity of ManchesterUniversity of PortsmouthUniversidad de La LagunaUniversity College CorkUniversity of HertfordshireUniversity College DublinNational Research University Higher School of EconomicsSpace Research InstituteCalar Alto ObservatoryUniversitat de ValènciaParc Científic de la Universitat de ValènciaCurtin UniversityInternational Centre for Radio Astronomy ResearchLiverpool John Moores UniversityInstituto de Astrofísica de AndalucíaUniversidad de MálagaMillennium Institute of AstrophysicsUniversity of MessinaAgenzia Spaziale ItalianaHuazhong University of Science and TechnologyClemson UniversityAstronomical Observatory of CapodimonteInstitute of Solar-Terrestrial PhysicsGran Telescopio Canarias (Spain)Istituto di Astrofisica Spaziale e Fisica Cosmica di BolognaNational Institute for AstrophysicsObservatoire de ParisGalaxies, Etoiles, Physique et InstrumentationMoscow Institute of Physics and TechnologyAstronomical Institute of the Slovak Academy of SciencesUniversity of AmsterdamMalmö UniversityNordic Optical TelescopeEvgeni Kharadze Georgian National Astrophysical ObservatoryGeorge Washington UniversityUniversité Paris Sciences et LettresSorbonne Université

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Les sujets associés

Gamma-ray bursts and supernovaeAstronomical Observations and InstrumentationGeophysics and Gravity Measurements

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