The Broadband Afterglow of GRB980329
S. A. Yost, D. A. Frail, F. A. Harrison, R. Sari, D. Reichart, J. S. Bloom, S. R. Kulkarni, G. H. Moriarty-Schieven, S. G. Djorgovski, P. A. Price, R. W. Goodrich, J. E. Larkin, F. Walter, D. S. Shepherd, D. W. Fox, G. B. Taylor, E. Berger, T. J. Galama
Abstract
We present radio observations of the afterglow of the bright gamma-ray burst GRB980329 made between one month and several years after the burst, a re-analysis of previously published submillimeter data, and late-time optical and near-infrared (NIR) observations of the host galaxy. From the absence of a spectral break in the optical/NIR colors of the host galaxy, we exclude the earlier suggestion that GRB980329 lies at a redshift of z >~5. We combine our data with the numerous multi-wavelength observations of the early afterglow, fit a comprehensive afterglow model to the entire broadband dataset, and derive fundamental physical parameters of the blast-wave and its host environment. Models for which the ejecta expand isotropically require both a high circumburst density and extreme radiative losses from the shock. No low density model (n << 10 cm-3) fits the data. A burst with a total energy of ~ 1051 erg, with the ejecta narrowly collimated to an opening angle of a few degrees, driven into a surrounding medium with density ~ 20 cm-3, provides a satisfactory fit to the lightcurves over a range of redshifts.
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