Extremely narrow spectrum of GRB110920A: further evidence for localized, subphotospheric dissipation
Author(s) -
Shabnam Iyyani,
F. Ryde,
Björn Ahlgren,
J. Michael Burgess,
Josefin Larsson,
Asaf Pe’er,
Christoffer Lundman,
M. Axelsson,
S. McGlynn
Publication year - 2015
Publication title -
monthly notices of the royal astronomical society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.058
H-Index - 383
eISSN - 1365-8711
pISSN - 0035-8711
DOI - 10.1093/mnras/stv636
Subject(s) - physics , photosphere , astrophysics , dissipation , electron , outflow , photon , spectral line , emission spectrum , radius , astronomy , optics , nuclear physics , thermodynamics , computer security , meteorology , computer science
Much evidence points towards that the photosphere in the relativistic outflow in GRBs plays an important role in shaping the observed MeV spectrum. However, it is unclear whether the spectrum is fully produced by the photosphere or whether a substantial part of the spectrum is added by processes far above the photosphere. Here we make a detailed study of the $\gamma$−ray emission from single pulse GRB110920A which has a spectrum that becomes extremely narrow towards the end of the burst. We show that the emission can be interpreted as Comptonisation of thermal photons by cold electrons in an unmagnetised outflow at an optical depth of $\tau \sim 20$. The electrons receive their energy by a local dissipation occurring close to the saturation radius. The main spectral component of GRB110920A and its evolution is thus, in this interpretation, fully explained by the emission from the photosphere including localised dissipation at high optical depths.
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