The distribution of equivalent widths in long GRB afterglow spectra
A. de Ugarte Postigo, J. P. U. Fynbo, C. C. Thoene, L. Christensen, J., Gorosabel, B. Milvang-Jensen, S. Schulze, P. Jakobsson, K. Wiersema, R., Sanchez-Ramirez, G. Leloudas, T. Zafar, D. Malesani, J. Hjorth

TL;DR
This study analyzes the distribution of equivalent widths in 69 GRB afterglow spectra to understand their interstellar medium, introducing new tools like EW diagrams and the line strength parameter, revealing correlations with host galaxy properties.
Contribution
It provides a comprehensive analysis of EW distributions in GRB spectra, introduces EW diagrams and the line strength parameter, and compares GRB absorption features with QSO DLAs.
Findings
Spectral features in GRB spectra are 2.5 times stronger than in QSO DLAs.
No significant evolution of the line strength parameter with redshift.
Correlation between absorption line strength, host galaxy extinction, and neutral hydrogen column density.
Abstract
The extreme brightness of gamma-ray burst (GRB) afterglows and their simple spectral shape make them ideal beacons to study the interstellar medium of their host galaxies through absorption line spectroscopy. Using 69 low-resolution GRB afterglow spectra, we conduct a study of the rest-frame equivalent width (EW) distribution of features with an average rest-frame EW larger than 0.5 A. To compare an individual GRB with the sample, we develop EW diagrams as a graphical tool, and we give a catalogue with diagrams for the 69 spectra. We introduce a line strength parameter (LSP) that allows us to quantify the strength of the absorption features as compared to the sample by a single number. Using the distributions of EWs of single-species features, we derive the distribution of column densities by a curve of growth (CoG) fit. We find correlations between the LSP and the extinction of the…
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