Abstract
GRB 130427A occurred in a relatively nearby galaxy; its prompt emission had the largest GRB fluence ever recorded. The afterglow of GRB 130427A was bright enough for the Nuclear Spectroscopic Telescope ARray (NuSTAR) to observe it in the 3-79 keV energy range long after its prompt emission (∼1.5 and 5 days). This range, where afterglow observations were previously not possible, bridges an important spectral gap. Combined with Swift, Fermi, and ground-based optical data, NuSTAR observations unambiguously establish a single afterglow spectral component from optical to multi-GeV energies a day after the event, which is almost certainly synchrotron radiation. Such an origin of the late-time Fermi/Large Area Telescope >10 GeV photons requires revisions in our understanding of collisionless relativistic shock physics. © 2013. The American Astronomical Society. All rights reserved.
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Kouveliotou, C., Granot, J., Racusin, J. L., Bellm, E., Vianello, G., Oates, S., … Zhang, W. W. (2013). NuSTAR observations of GRB 130427A establish a single component synchrotron afterglow origin for the late optical to multi-gev emission. Astrophysical Journal Letters, 779(1). https://doi.org/10.1088/2041-8205/779/1/L1
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