English

Dissecting cold gas in a high-redshift galaxy using a lensed background quasar

Astrophysics of Galaxies 2018-11-21 v1

Abstract

We present a study of cold gas absorption from a damped Lyman-α\alpha absorber (DLA) at redshift zabs=1.946z_{\rm abs}=1.946 towards two lensed images of the quasar J144254.78+405535.5 at redshift zQSO=2.590z_{\rm QSO} = 2.590. The physical separation of the two lines of sight at the absorber redshift is dabs=0.7d_{\rm abs}=0.7~kpc based on our lens model. We observe absorption lines from neutral carbon and H2_2 along both lines of sight indicating that cold gas is present on scales larger than dabsd_{\rm abs}. We measure column densities of HI to be logN(H\i)=20.27±0.02\log N(\rm H\,\i) = 20.27\pm0.02 and 20.34±0.0520.34\pm0.05 and of H2_2 to be logN(H2)=19.7±0.1\log N(\rm H_2) = 19.7\pm0.1 and 19.9±0.219.9\pm0.2. The metallicity inferred from sulphur is consistent with Solar metallicity for both sightlines: [S/H]A=0.0±0.1[{\rm S/H}]_A = 0.0\pm0.1 and [S/H]B=0.1±0.1[{\rm S/H}]_B = -0.1\pm0.1. Based on the excitation of low rotational levels of H2_2, we constrain the temperature of the cold gas phase to be T=109±20T=109\pm20 and T=89±25T=89\pm25 K for the two lines of sight. From the relative excitation of fine-structure levels of CI, we constrain the hydrogen volumetric densities in the range of 4011040-110 cm3^{-3}. Based on the ratio of observed column density and volumetric density, we infer the average individual `cloud' size along the line of sight to be l0.1l\approx0.1 pc. Using the transverse line-of-sight separation of 0.7 kpc together with the individual cloud size, we are able to put an upper limit to the volume filling factor of cold gas of fvol<0.2f_{\rm vol} < 0.2 %. Nonetheless, the projected covering fraction of cold gas must be large (close to unity) over scales of a few kpc in order to explain the presence of cold gas in both lines of sight. Compared to the typical extent of DLAs (~10-30 kpc), this is consistent with the relative incidence rate of CI absorbers and DLAs.

Keywords

Cite

@article{arxiv.1809.01053,
  title  = {Dissecting cold gas in a high-redshift galaxy using a lensed background quasar},
  author = {J. -K. Krogager and P. Noterdaeme and J. M. O'Meara and M. Fumagalli and J. P. U. Fynbo and J. X. Prochaska and J. Hennawi and S. Balashev and F. Courbin and M. Rafelski and A. Smette and P. Boissé},
  journal= {arXiv preprint arXiv:1809.01053},
  year   = {2018}
}

Comments

12 pages + 5 pages of appendix. Accepted for publication in A&A

R2 v1 2026-06-23T03:53:55.920Z