Proximate Molecular Quasar Absorbers: Excess of damped H2 systems at zabs~zQSO in SDSS DR14
P. Noterdaeme, S. Balashev, J.-K. Krogager, R. Srianand, H., Fathivavsari, P. Petitjean, C. Ledoux

TL;DR
This study identifies an excess of proximate molecular hydrogen systems near quasars in SDSS DR14, revealing their properties, origins, and the influence of quasar radiation on their molecular content.
Contribution
It presents the first large-scale detection and analysis of proximate damped H2 systems without prior metal or hydrogen content assumptions, highlighting their prevalence and characteristics.
Findings
Proximate H2 systems are 4-5 times more common than intervening ones.
Presence of Ly-alpha emission in about half of the systems constrains cloud sizes.
Metallicity of systems is around one-tenth Solar with large variation.
Abstract
We present results from a search for strong H2 absorption systems proximate to quasars (zabs~zem) in the Sloan Digital Sky Survey (SDSS) Data Release 14. The search is based on the Lyman-Werner band signature of damped H2 absorption lines without any prior on the associated metal or neutral hydrogen content. This has resulted in the detection of 81 systems with log N(H2)~19-20 located within a few thousand km/s from the quasar. Compared to a control sample of intervening systems, this implies an excess of proximate H2 systems by about a factor of 4 to 5. The incidence of H2 systems increases steeply with decreasing relative velocity, reaching an order of magnitude higher than expected from intervening statistics at Delta_v<1000 km/s. The most striking feature of the proximate systems compared to the intervening ones is the presence of Ly-alpha emission in the core of the associated…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Galaxies: Formation, Evolution, Phenomena · Stellar, planetary, and galactic studies
