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Accès ouvert déclaré 2025 article

Very high-energy gamma-ray detection and long-term multiwavelength view of the flaring blazar B2 1811+31

3Citations signalées, ce qui n’est pas une note de qualité
68Institutions déclarées
17Pays d’affiliation déclarés

Rattachement africain : jp, ch, it, es, de, hr, br, pl, am, no, fr, fi, in, bg, il, us, gr. Niveau de preuve : code pays fourni par la source.

Le résumé fourni par la source

Context. Among the blazars whose emission has been detected up to very high-energy (VHE; 100 GeV<E<100 TeV) γ rays, intermediate synchrotron-peaked BL Lacs (IBLs) are quite rare. The IBL B2 1811+31 (z = 0.117) exhibited intense flaring activity in 2020. Detailed characterization of the source emission from radio to γ-ray energies was achieved with quasi-simultaneous observations, which led to the first-time detection of VHE γ-ray emission from the source with the MAGIC telescopes. Aims. In this work, we present a comprehensive multiwavelength (MWL) view of B2 1811+31, with a specific focus on the 2020 VHE flare, employing data from MAGIC, Fermi-LAT, Swift-XRT, Swift-UVOT, and several optical and radio ground-based telescopes. Methods. Long-term MWL data were employed to contextualize the high-state episode within the source emissions over 18 years. We investigated the variability, cross-correlations, and classification of the source emissions during low and high states. We propose an interpretative leptonic model for the observed radiative high state. Results. During the 2020 flaring state, the synchrotron peak frequency shifted to higher values and reached the limit of the IBL classification. Variability in timescales of a few hours in the high-energy (HE; 100 MeV<E<100 GeV) γ-ray band poses an upper limit of 6×1014 δD cm on the size of the emission region responsible for the γ-ray flare, with δD being the relativistic Doppler factor of the region. During the 2020 high state, the average spectrum became harder in the HE γ-ray band compared to the low states. A similar behavior has been observed in X-rays. Conversely, during different activity periods, we find harder-when-brighter trends in X-rays and a hint of softer-when-brighter trends at HE γ rays. A long-term HE γ-ray and optical correlation indicates that the same emission regions dominate the radiative output in both ranges, whereas the evolution at 15 GHz shows no correlation with the fluxes at higher frequencies. We test one-zone and two-zone synchrotron-self-Compton models for describing the broadband spectral energy distribution during the 2020 flaring state and investigate the self-consistency of the proposed scenario.

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Very high-energy gamma-ray detection and long-term multiwavelength view of the flaring blazar B2 1811+31
Date Crossref
01/05/2025
Éditeur
EDP Sciences
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

Tokai UniversityThe University of TokyoETH ZurichUniversity of SienaInstitute for High Energy PhysicsUniversitat de BarcelonaInstituto de Astrofísica de AndalucíaNational Institute for AstrophysicsUniversity of UdineUniversity of TriesteInternational Center for Relativistic AstrophysicsMax Planck Institute for PhysicsUniversity of PaduaIstituto Nazionale di Fisica Nucleare, Sezione di PadovaUniversity of ZagrebCentro Brasileiro de Pesquisas FísicasUniversidad Complutense de MadridUniversidad de La LagunaInstituto de Astrofísica de CanariasUniversity of ŁódźCentro de Investigaciones Energéticas, Medioambientales y TecnológicasUniversitat Autònoma de BarcelonaUniversity of PisaIstituto Nazionale di Fisica Nucleare, Sezione di PisaIstituto Nazionale di Fisica Nucleare, Sezione di BariPolytechnic University of BariA. Alikhanyan National LaboratoryIstituto di Radioastronomia di BolognaUniversity of BergenIstituto Nazionale di Fisica Nucleare, Sezione di TorinoUniversity of TurinPort d'Informació CientíficaUniversity of RijekaUniversity of WürzburgTU Dortmund UniversityHiroshima UniversityDeutsches Elektronen-Synchrotron DESYInternational Center for Relativistic Astrophysics NetworkCentre National de la Recherche ScientifiqueUniversité Paris CitéLaboratoire AstroParticule et CosmologieUniversity of OsijekUniversity of TurkuTurku Centre for Computer ScienceUniversity of OsloUniversity of GenevaSaha Institute of Nuclear PhysicsHomi Bhabha National InstituteBulgarian Academy of SciencesYamagata UniversityFinnish Youth Research SocietyUniversity of OuluChiba UniversityObayashi (Japan)Nagoya UniversityOsservatorio Astronomico di PadovaKyoto UniversityIstituto Nazionale di Fisica Nucleare, Sezione di Roma IKonan UniversityUniversity of TrentoWeizmann Institute of ScienceMVZ Labor RavensburgCalifornia Institute of TechnologyAalto UniversityFoundation for Research and Technology HellasMax Planck Institute for Radio AstronomyFriedrich-Alexander-Universität Erlangen-NürnbergWashington University in St. Louis

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

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