Time variations of narrow absorption lines in high resolution quasar spectra
P. Boiss\'e (1), J. Bergeron (1), J.X. Prochaska (2), C. P\'eroux (3),, D.G. York (4) ((1) UPMC-CNRS Institut d'Astrophysique de Paris, (2) UC Santa, Cruz, (3) LAM Marseille, (4) University of Chicago)

TL;DR
This study investigates the stability and variability of narrow absorption lines in high-resolution quasar spectra over several years, revealing remarkable stability in some systems and small-scale structure in others, with implications for understanding intervening gas environments.
Contribution
First systematic analysis of temporal variations in narrow absorption lines across diverse environments using high-resolution spectra, highlighting stability and small-scale structures.
Findings
MgII and FeII lines are remarkably stable over years.
Galactic NaI lines show significant changes indicating small-scale structure.
Tentative variations in H2 and CI suggest fine-scale gas structures.
Abstract
Aims. We have searched for temporal variations of narrow absorption lines in high resolution quasar spectra. A sample of 5 distant sources have been assembled, for which 2 spectra - VLT/UVES or Keck/HIRES - taken several years apart are available. Methods. We first investigate under which conditions variations in absorption line profiles can be detected reliably from high resolution spectra, and discuss the implications of changes in terms of small-scale structure within the intervening gas or intrinsic origin. The targets selected allow us to investigate the time behavior of a broad variety of absorption line systems, sampling diverse environments: the vicinity of active nuclei, galaxy halos, molecular-rich galaxy disks associated with damped Lya systems, as well as neutral gas within our own Galaxy. Results. Absorption lines from MgII, FeII or proxy species with lines of lower opacity…
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