Time-dependent excitation and ionization modelling of absorption-line variability due to GRB 080310
P. M. Vreeswijk, C. Ledoux, A. J. J. Raassen, A. Smette, A. De Cia, P., R. Wo\'zniak, A. J. Fox, W. T. Vestrand, P. Jakobsson

TL;DR
This study models the time-variable absorption lines in GRB 080310, demonstrating that ionization, in addition to excitation, explains the observed spectral evolution and providing evidence for time-variable ionization in the circumburst medium.
Contribution
It introduces a comprehensive model combining excitation and ionization to explain absorption-line variability in GRB afterglow spectra, highlighting ionization's role in such phenomena.
Findings
Ionization is necessary to explain FeII and FeIII column-density changes.
A significant fraction of FeII ions are ionized to FeIII, populating the 7S3 level.
Time-variable ionization is evidenced in the circumburst medium of GRB 080310.
Abstract
We model the time-variable absorption of FeII, FeIII, SiII, CII and CrII detected in UVES spectra of GRB 080310, with the afterglow radiation exciting and ionizing the interstellar medium in the host galaxy at a redshift of z=2.42743. To estimate the rest-frame afterglow brightness as a function of time, we use a combination of the optical VRI photometry obtained by the RAPTOR-T telescope array -- which are presented in this paper -- and Swift's X-Ray Telescope observations. Excitation alone, which has been successfully applied for a handful of other GRBs, fails to describe the observed column-density evolution in the case of GRB 080310. Inclusion of ionization is required to explain the column-density decrease of all observed FeII levels (including the ground state 6D9/2) and increase of the FeIII 7S3 level. The large population of ions in this latter level (up to 10% of all FeIII) can…
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