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The central engine of GRB 130831A and the energy breakdown of a relativistic explosion

M. de PasqualeIstituto Euro Mediterraneo di Scienza e Tecnologia, Palermo 90139, ItalyS. R. OatesMullard Space Science Laboratory, University College London, Dorking, RH5 6NT, UKJ. L. RacusinCenter for Research and Exploration in Space Science And Technology (CRESST) and NASA Goddard Space Flight Center, Greenbelt, MD 20771, USAД. А. КаннThüringer Landessternwarte Tautenburg, Sternwarte 5, D-07778 Tautenburg, GermanyBing ZhangDepartment of Physics and Astronomy, University of Nevada Las Vegas, Las Vegas NV 89154, USAA. PozanenkoSpace Research Institute (IKI), Moscow 117997, RussiaA. VolnovaSpace Research Institute (IKI), Moscow 117997, RussiaA. TrotterUniversity of North Carolina at Chapel Hill, Chapel Hill, North Carolina NC 27599, USAN. FrankUniversity of North Carolina at Chapel Hill, Chapel Hill, North Carolina NC 27599, USAAntonino CucchiaraCenter for Research and Exploration in Space Science And Technology (CRESST) and NASA Goddard Space Flight Center, Greenbelt, MD 20771, USAE. TrojaCenter for Research and Exploration in Space Science And Technology (CRESST) and NASA Goddard Space Flight Center, Greenbelt, MD 20771, USAB. SbarufattiPennsylvania State University, University Park, PA 16802, USAN. R. ButlerArizona State University, Tempe, AZ 85281, Arizona, USAS. SchulzeInstituto de Astrofísica, Facultad de Física, Pontificia Universidad Católica de Chile, Vicuña Mackenna 4860, 7820436 Macul, Santiago, ChileZ. CanoCentre for Astrophysics and Cosmology, Science Institute, University of Iceland, 107 Reykjavik, IcelandM. J. PageMullard Space Science Laboratory, University College London, Dorking, RH5 6NT, UKA. J. Castro‐TiradoUnidad Asociada Departamento de Ingenieria de Sistemas y Automatica, Universidad de Malaga, MÁlaga, 29071, SpainJ. GorosabelIkerbasque, Basque Foundation for Science, Alameda de Urquijo 36-5, E-48008 Bilbao, SpainA. Y. LienCenter for Research and Exploration in Space Science And Technology (CRESST) and NASA Goddard Space Flight Center, Greenbelt, MD 20771, USAO. FoxUniversity of California Berkeley, Berkeley, CA 94720, USAO. LittlejohnsArizona State University, Tempe, AZ 85281, Arizona, USAJ. S. BloomUniversity of California Berkeley, Berkeley, CA 94720, USAJ. X. ProchaskaUniversity of California Santa Cruz, Santa Cruz, CA 95064, USAJ. A. de DiegoInstituto de Astronomía, Universidad Nacional Autónoma de México, Apartado Postal 70-264 04510 México, DF, MexicoJ. González‐HernándezInstituto de Astronomía, Universidad Nacional Autónoma de México, Apartado Postal 70-264 04510 México, DF, MexicoM. G. RicherInstituto de Astronomía, Universidad Nacional Autonoma de México, Apartado Postal 106, 22800 Ensenada, Baja California, MexicoC. Román-ZúñigaInstituto de Astronomía, Universidad Nacional Autonoma de México, Apartado Postal 106, 22800 Ensenada, Baja California, MexicoA. M. WatsonInstituto de Astronomía, Universidad Nacional Autónoma de México, Apartado Postal 70-264 04510 México, DF, MexicoN. GehrelsCenter for Research and Exploration in Space Science And Technology (CRESST) and NASA Goddard Space Flight Center, Greenbelt, MD 20771, USAH. MoseleyCenter for Research and Exploration in Space Science And Technology (CRESST) and NASA Goddard Space Flight Center, Greenbelt, MD 20771, USAA. KutyrevCenter for Research and Exploration in Space Science And Technology (CRESST) and NASA Goddard Space Flight Center, Greenbelt, MD 20771, USASilvia ZaneMullard Space Science Laboratory, University College London, Dorking, RH5 6NT, UKV. HoetteThe University of Chicago, Chicago, IL 60637, USAR. R. RussellThe University of Chicago, Chicago, IL 60637, USAV. RumyantsevCrimean Astrophysical Observatory, 98409 pgt. Nauchny, CrimeaE. KlunkoLermontov st, 126a Irkutsk, RussiaО. БурхоновUlugh Beg Astronomical Institute, 100052, 33 Astronomicheskaya str., Tashkent, UzbekistanA. A. BreeveldMullard Space Science Laboratory, University College London, Dorking, RH5 6NT, UKD. ReichartUniversity of North Carolina at Chapel Hill, Chapel Hill, North Carolina NC 27599, USAJ. HaislipUniversity of North Carolina at Chapel Hill, Chapel Hill, North Carolina NC 27599, USA
ABI

Аннотация

Gamma-ray bursts (GRBs) are the most luminous explosions in the Universe, yet the nature and physical properties of their energy sources are far from understood. Very important clues, however, can be inferred by studying the afterglows of these events. We present optical and X-ray observations of GRB 130831A obtained by <it>Swift, Chandra</it>, Skynet, Reionization And Transients Infra-Red camera, Maidanak, International Scientific Optical-Observation Network, Nordic Optical Telescope, Liverpool Telescope and Gran Telescopio Canarias. This burst shows a steep drop in the X-ray light curve at ≃105 s after the trigger, with a power-law decay index of α ∼ 6. Such a rare behaviour cannot be explained by the standard forward shock (FS) model and indicates that the emission, up to the fast decay at 105 s, must be of ‘internal origin’, produced by a dissipation process within an ultrarelativistic outflow. We propose that the source of such an outflow, which must produce the X-ray flux for ≃1 d in the cosmological rest frame, is a newly born magnetar or black hole. After the drop, the faint X-ray afterglow continues with a much shallower decay. The optical emission, on the other hand, shows no break across the X-ray steep decrease, and the late-time decays of both the X-ray and optical are consistent. Using both the X-ray and optical data, we show that the emission after ≃105 s can be explained well by the FS model. We model our data to derive the kinetic energy of the ejecta and thus measure the efficiency of the central engine of a GRB with emission of internal origin visible for a long time. Furthermore, we break down the energy budget of this GRB into the prompt emission, the late internal dissipation, the kinetic energy of the relativistic ejecta, and compare it with the energy of the associated supernova, SN 2013 fu.

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