Multicomponent H2 in DLA at zabs = 2.05: physical conditions through observations and numerical models
arXiv:1808.07906 · doi:10.1093/mnras/sty2321
Abstract
We perform detailed spectroscopic analysis and numerical modelling of an H2-bearing damped Lyman-alpha absorber (DLA) at zabs = 2.05 towards the quasar FBQS J2340-0053. Metal absorption features arise from fourteen components spread over = 114 km s, seven of which harbour H2. Column densities of atomic and molecular species are derived through Voigt profile analysis of their absorption lines. We measure total N(H I), N(H2) and N(HD) to be 20.35+/-0.05, 17.99+/-0.05 and 14.28+/-0.08 (log cm) respectively. H2 is detected in the lowest six rotational levels of the ground vibrational state. The DLA has metallicity, Z = 0.3 Z$_\sun$ ([S/H] = -0.52+/-0.06) and dust-to-gas ratio, = 0.34+/-0.07. Numerical models of the H2 components are constrained individually to understand the physical structure of the DLA. We conclude that the DLA is subjected to the metagalactic background radiation and cosmic ray ionization rate of 10 s. Dust grains in this DLA are smaller than grains in the Galactic interstellar medium. The inner molecular regions of the H2 components have density, temperature and gas pressure in the range 30-120 cm, 140-360 K and 7,000-23,000 cm K respectively. Micro-turbulent pressure is a significant constituent of the total pressure, and can play an important role in these innermost regions. Our H2 component models enable us to constrain component-wise N(H I), and elemental abundances of sulphur, silicon, iron and carbon. We deduce the line-of-sight thickness of the H2-bearing parts of the DLA to be 7.2 pc.
35 pages, 25 tables, 21 figures, Accepted for publication in the Monthly Notices of the Royal Astronomical Society
References in corpus (28)
- H3+ in Diffuse Interstellar Clouds: a Tracer for the Cosmic-Ray Ionization Rate
- Herschel Survey of Galactic OH+, H2O+, and H3O+: Probing the Molecular Hydrogen Fraction and Cosmic-Ray Ionization Rate
- Uncertainties in H2 and HD Chemistry and Cooling and their Role in Early Structure Formation
- A connection between star formation activity and cosmic rays in the starburst galaxy M 82
- Molecular hydrogen in high-redshift Damped Lyman-alpha systems: The VLT/UVES database
- C, N, O Abundances in the Most Metal-Poor Damped Lyman alpha Systems
- The Photon Underproduction Crisis
- Discovery of a Perseus-like cloud in the early Universe: HI-to-H2 transition, carbon monoxide and small dust grains at zabs=2.53 towards the quasar J0000+0048
- Excitation mechanisms in newly discovered H2-bearing Damped Lyman-alpha clouds: systems with low molecular fractions
- Directly imaging damped Ly-alpha galaxies at z>2. III: The star formation rates of neutral gas reservoirs at z~2.7
- CO-dark molecular gas at high redshift: very large H content and high pressure in a low metallicity damped Lyman-alpha system
- The Second Data Release of the KODIAQ Survey
- HD molecules at high redshift: A low astration factor of deuterium in a solar-metallicity DLA system at z=2.418
- Physical conditions in the neutral interstellar medium at z=2.43 toward Q2348-011
- Bimodality in Damped Lyman alpha Systems
- VLT/UVES observations of extremely strong intervening damped Lyman-alpha systems: Molecular hydrogen and excited carbon, oxygen and silicon at log N(HI)=22.4
- Molecular hydrogen absorption systems in Sloan Digital Sky Survey
- Spotting high-z molecular absorbers using neutral carbon: Results from a complete spectroscopic survey with the VLT
- HD/H2 Molecular Clouds in the Early Universe: The Problem of Primordial Deuterium
- Constraining the H column density distribution at z3 from composite DLA spectra
- HD molecules at high redshift: The absorption system at z=2.3377 towards Q 1232+082
- An HST/COS survey of molecular hydrogen in DLAs & sub-DLAs at z < 1: Molecular fraction and excitation temperature
- The Magellan Uniform Survey of Damped Lyman alpha Systems II: Paucity of Strong Molecular Hydrogen Absorption
- The elusive HI-> H2 transition in high-z damped Lyman-alpha systems
- Neutral chlorine and molecular hydrogen at high redshift
- Implications of an updated ultraviolet background for the ionization mechanisms of intervening Ne VIII absorbers
- Partial covering of emission regions of Q 0528-250 by intervening H clouds
- Molecular hydrogen from z = 0.0963 DLA towards the QSO J1619+3342
Cited by in corpus (13)
- X-shooter observations of strong H-bearing DLAs at high redshift
- The Cosmic Ultraviolet Baryon Survey (CUBS) II: Discovery of an H-Bearing DLA in the Vicinity of an Early-Type Galaxy at z = 0.576
- Physical conditions in diffuse interstellar medium of local and high redshift galaxies: measurements based on excitation of H rotational and CI fine-structure levels
- HD molecules at high redshift: cosmic-ray ionization rate in the diffuse interstellar medium
- HD/H ratio in the diffuse interstellar medium
- uGMRT search for cold gas at z~1-1.4 towards red quasars
- Evidence for Late-Time Feedback from the Discovery of Multiphase Gas in a Massive Elliptical at
- Probing the tidal disruption event iPTF16axa with CLOUDY and disc-wind models
- Physical conditions in two high-redshift H-bearing GRB-DLAs, 120815A and 121024A
- Spectroscopic modelling of four neutron star low-mass X-ray binaries using CLOUDY
- Multi-phase gas properties of extremely strong intervening DLAs towards quasars
- Detecting PAHs in high-z galaxies in proxy: Modelling physical conditions in an extremely strong damped Lyman-alpha absorber towards QSO SDSS J1143+1420 at z=2.323
- Spectroscopic modelling of two high-mass X-ray binaries, Cyg X--3 and 4U 1538--522