Galactic nebular lines in the fiber spectra of background QSOs: Reaching a hundred QSO-galaxy pairs with spectroscopic and photometric measurements
arXiv:1412.6661 · doi:10.1093/mnras/stu2739
Abstract
We present photometric and spectroscopic measurements of 53 QSO-galaxy pairs from the Sloan Digital Sky Survey, where nebular emission lines from a 0<z<0.84 foreground galaxy are detected in the fiber spectra of a background QSO, bringing the overall sample to 103 QSO-galaxy pairs detected in the SDSS. We here study the nature of these systems. Detected foreground galaxies appear at impact parameters between 0.37 kpc and 12.68 kpc. The presence of oxygen and Balmer emission lines allows us to determine the emission line metallicities for our sample, which are on average super-solar in value. Star formation rates for our sample are in the range 0.01-12 M_sol yr^-1. We utilize photometric redshift fitting techniques to estimate the M_stellar values of our galaxies (log M_stellar = 7.34 - 11.54), and extrapolate this relationship to those galaxies with no imaging detections. Where available, we measure the absorption features present in the QSO spectrum due to the foreground galaxy and the relationships between their rest equivalent widths. We report an anti-correlation between impact parameter and E(B-V)_(g-i), as well as a correlation between galaxy color (u-r) and E(B-V)_(g-i). We find that our sample is one of late-type, star forming galaxies comparable to field galaxies in a similar redshift range, providing important clues to better understand absorption systems. These galaxies represent a sample of typical galaxies in the local Universe for which abundances, extinction, morphology, and absorption properties may be measured using background QSOs with great potential for follow-up observations.
31 pages, 10 figures, 6 tables, MNRAS accepted
References in corpus (15)
- The Sloan Digital Sky Survey Quasar Catalog IV. Fifth Data Release
- The Cosmic BPT Diagram: Confronting Theory with Observations
- Galaxy And Mass Assembly: Deconstructing Bimodality - I. Red ones and blue ones
- The Galaxy Counterparts of the two high-metallicity DLAs at z=2.412 and z=2.583 towards Q0918+1636
- ALFALFA Discovery of the Nearby Gas-Rich Dwarf Galaxy Leo~P. II. Optical Imaging Observations
- Dwarf Galaxy Formation with H2-Regulated Star Formation: II. Gas-Rich Dark Galaxies at Redshift 2.5
- New abundance determinations in z < 1.5 QSO absorbers: seven sub-DLAs and one DLA
- The chemical compositions of 10 new sub-DLAs and strong Lyman-limit systems at z < 1.5
- Measurements of CaII absorption, metals, and dust in a sample of z~1 DLAs and subDLAs
- 21-cm absorption from galaxies at z ~ 0.3
- New Magellan Inamori Kyocera Echelle Observations of z<1.5 sub-damped Lyman-alpha systems
- The metallicities of luminous, massive field galaxies at intermediate redshifts
- Emission Line Spectroscopy of a Damped Lyman-alpha Absorbing Galaxy at z = 0.437
- Ca II Absorbers in the Sloan Digital Sky Survey: Statistics
- Galaxies with Background QSOs: II. An Automated Search for Multiple Galaxy Emission Lines
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