Characterizing the Low-Redshift Intergalactic Medium towards PKS1302-102
Kathy L. Cooksey (1), Jason X. Prochaska (1, 2), Hsiao-Wen Chen, (3), John S. Mulchaey (4), Benjamin J. Weiner (5) ((1) UC Santa Cruz, (2), UCO/Lick Obs., (3) U Chicago, (4) Obs. of Carnegie Inst. of Washington, (5), Steward Obs., U of Arizona)

TL;DR
This study analyzes low-redshift intergalactic metal-line absorbers towards PKS1302-102 using UV spectra, CLOUDY models, and galaxy surveys, revealing diverse environments and ionization states.
Contribution
It provides a detailed characterization of metal-line absorption systems at low redshift, including their metallicities, ionization states, and galactic environments, using archival data and modeling.
Findings
15 strong Lya absorbers identified
Six associated with CIII absorption, with a density of 36+13/-9 per unit redshift
Two systems show OVI absorption, with a density of 7+9/-4 per unit redshift
Abstract
We present a detailed analysis of the intergalactic metal-line absorption systems in the archival HST/STIS and FUSE ultraviolet spectra of the low-redshift quasar PKS1302-102 (z_QSO = 0.2784). We supplement the archive data with CLOUDY ionization models and a survey of galaxies in the quasar field. There are 15 strong Lya absorbers with column densities logN_HI > 14. Of these, six are associated with at least CIII 977 absorption (logN(C^++) > 13); this implies a redshift density dN_CIII/dz = 36+13/-9 (68% confidence limits) for the five detections with rest equivalent width W_r > 50 mA. Two systems show OVI 1031,1037 absorption in addition to CIII (logN(O^+5) > 14). One is a partial Lyman limit system (logN_HI = 17) with associated CIII, OVI, and SiIII 1206 absorption. There are three tentative OVI systems that do not have CIII detected. For one OVI doublet with both lines detected at 3…
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