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The afterglows of Swift-era gamma-ray bursts. I. Comparing pre-Swift and Swift-era long/soft (type II) GRB optical afterglows

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dc.contributor.author Kann D.
dc.contributor.author Klose S.
dc.contributor.author Zhang B.
dc.contributor.author Malesani D.
dc.contributor.author Nakar E.
dc.contributor.author Pozanenko A.
dc.contributor.author Wilson A.
dc.contributor.author Butler N.
dc.contributor.author Jakobsson P.
dc.contributor.author Schulze S.
dc.contributor.author Andreev M.
dc.contributor.author Antonelli L.
dc.contributor.author Bikmaev I.
dc.contributor.author Biryukov V.
dc.contributor.author Böttcher M.
dc.contributor.author Burenin R.
dc.contributor.author Cerón J.
dc.contributor.author Castro-Tirado A.
dc.contributor.author Chincarini G.
dc.contributor.author Cobb B.
dc.contributor.author Covino S.
dc.contributor.author D'Avanzo P.
dc.contributor.author D'Elia V.
dc.contributor.author Valle M.
dc.contributor.author De Ugarte Postigo A.
dc.contributor.author Efimov Y.
dc.contributor.author Ferrero P.
dc.contributor.author Fugazza D.
dc.contributor.author Fynbo J.
dc.contributor.author Gålfalk M.
dc.contributor.author Grundahl F.
dc.contributor.author Gorosabel J.
dc.contributor.author Gupta S.
dc.contributor.author Guziy S.
dc.contributor.author Hafizov B.
dc.contributor.author Hjorth J.
dc.contributor.author Holhjem K.
dc.contributor.author Ibrahimov M.
dc.contributor.author Im M.
dc.contributor.author Israel G.
dc.contributor.author Jelainek M.
dc.contributor.author Jensen B.
dc.contributor.author Karimov R.
dc.contributor.author Khamitov I.
dc.contributor.author Kiziloǧlu U.
dc.contributor.author Klunko E.
dc.contributor.author Kubánek P.
dc.contributor.author Kutyrev A.
dc.contributor.author Laursen P.
dc.contributor.author Levan A.
dc.contributor.author Mannucci F.
dc.contributor.author Martin C.
dc.contributor.author Mescheryakov A.
dc.contributor.author Mirabal N.
dc.contributor.author Norris J.
dc.contributor.author Ovaldsen J.
dc.contributor.author Paraficz D.
dc.contributor.author Pavlenko E.
dc.contributor.author Piranomonte S.
dc.contributor.author Rossi A.
dc.contributor.author Rumyantsev V.
dc.contributor.author Salinas R.
dc.contributor.author Sergeev A.
dc.contributor.author Sharapov D.
dc.contributor.author Sollerman J.
dc.contributor.author Stecklum B.
dc.contributor.author Stella L.
dc.contributor.author Tagliaferri G.
dc.contributor.author Tanvir N.
dc.contributor.author Telting J.
dc.contributor.author Testa V.
dc.contributor.author Updike A.
dc.contributor.author Volnova A.
dc.contributor.author Watson D.
dc.contributor.author Wiersema K.
dc.contributor.author Xu D.
dc.date.accessioned 2018-09-18T20:01:55Z
dc.date.available 2018-09-18T20:01:55Z
dc.date.issued 2010
dc.identifier.issn 0004-637X
dc.identifier.uri https://dspace.kpfu.ru/xmlui/handle/net/135899
dc.description.abstract We have gathered optical photometry data from the literature on a large sample of Swift-era gamma-ray burst (GRB) afterglows including GRBs up to 2009 September, for a total of 76 GRBs, and present an additional three pre-Swift GRBs not included in an earlier sample. Furthermore, we publish 840 additional new photometry data points on a total of 42 GRB afterglows, including large data sets for GRBs 050319, 050408, 050802, 050820A, 050922C, 060418, 080413A, and 080810. We analyzed the light curves of all GRBs in the sample and derived spectral energy distributions for the sample with the best data quality, allowing us to estimate the host-galaxy extinction. We transformed the afterglow light curves into an extinction-corrected z = 1 system and compared their luminosities with a sample of pre-Swift afterglows. The results of a former study, which showed that GRB afterglows clustered and exhibited a bimodal distribution in luminosity space, are weakened by the larger sample. We found that the luminosity distribution of the two afterglow samples (Swift-era and pre-Swift) is very similar, and that a subsample for which we were not able to estimate the extinction, which is fainter than the main sample, can be explained by assuming a moderate amount of line-of-sight host extinction. We derived bolometric isotropic energies for all GRBs in our sample, and found only a tentative correlation between the prompt energy release and the optical afterglow luminosity at 1 day after the GRB in the z = 1 system. A comparative study of the optical luminosities of GRB afterglows with echelle spectra (which show a high number of foreground absorbing systems) and those without, reveals no indication that the former are statistically significantly more luminous. Furthermore, we propose the existence of an upper ceiling on afterglow luminosities and study the luminosity distribution at early times, which was not accessible before the advent of the Swift satellite. Most GRBs feature afterglows that are dominated by the forward shock from early times on. Finally, we present the first indications of a class of long GRBs, which form a bridge between the typical highluminosity, high-redshift events and nearby low-luminosity events (which are also associated with spectroscopic supernovae) in terms of energetics and observed redshift distribution, indicating a continuous distribution overall. © 2010. The American Astronomical Society. All rights reserved. Printed in the U.S.A.
dc.relation.ispartofseries Astrophysical Journal
dc.subject Dust, extinction
dc.subject Gamma-ray burst: general
dc.title The afterglows of Swift-era gamma-ray bursts. I. Comparing pre-Swift and Swift-era long/soft (type II) GRB optical afterglows
dc.type Article
dc.relation.ispartofseries-issue 2
dc.relation.ispartofseries-volume 720
dc.collection Публикации сотрудников КФУ
dc.relation.startpage 1513
dc.source.id SCOPUS0004637X-2010-720-2-SID77958515957


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  • Публикации сотрудников КФУ Scopus [24551]
    Коллекция содержит публикации сотрудников Казанского федерального (до 2010 года Казанского государственного) университета, проиндексированные в БД Scopus, начиная с 1970г.

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