Photometry and spectroscopy of GRB 060526: A detailed study of the afterglow and host galaxy of a z=3.2 gamma-ray burst
C. C. Th\"one, D. A. Kann, G. J\'ohannesson, J. H. Selj, A. O., Jaunsen, J. P. U. Fynbo, C. W. Akerlof, K. S. Baliyan, C. Bartolini, I. F., Bikmaev, J. S. Bloom, R. A. Burenin, B. E. Cobb, S. Covino, P. A. Curran, H., Dahle, A. Ferrero, S. Foley, J. French, A. S. Fruchter

TL;DR
This study provides an extensive multi-wavelength photometric and spectroscopic analysis of GRB 060526's afterglow and host galaxy at z=3.2, revealing complex light curve behavior, energy injections, and host metallicity.
Contribution
It offers one of the largest photometric datasets for a GRB afterglow, combined with spectral analysis, to model afterglow variability and determine host galaxy properties.
Findings
Double broken power law light curve with energy injections
No significant extinction along line of sight
Host galaxy is faint with high metallicity for its redshift
Abstract
Aims: With this paper we want to investigate the highly variable afterglow light curve and environment of gamma-ray burst (GRB) 060526 at . Methods: We present one of the largest photometric datasets ever obtained for a GRB afterglow, consisting of multi-color photometric data from the ultraviolet to the near infrared. The data set contains 412 data points in total to which we add additional data from the literature. Furthermore, we present low-resolution high signal-to-noise spectra of the afterglow. The afterglow light curve is modeled with both an analytical model using broken power law fits and with a broad-band numerical model which includes energy injections. The absorption lines detected in the spectra are used to derive column densities using a multi-ion single-component curve-of-growth analysis from which we derive the metallicity of the host of GRB 060526. Results:…
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