4.7 Article

DIRECT EVIDENCE OF COLD GAS IN DLA 0812+32B

Journal

ASTROPHYSICAL JOURNAL
Volume 704, Issue 1, Pages 247-254

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/0004-637X/704/1/247

Keywords

galaxies: evolution; intergalactic medium; quasars: absorption lines

Funding

  1. STFC
  2. Leverhulme Trust
  3. STFC [PP/E00105X/1] Funding Source: UKRI
  4. Science and Technology Facilities Council [PP/E00105X/1] Funding Source: researchfish

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We present the first direct evidence for cold gas in a high redshift DLA galaxy. We measured several multiplets of weak neutral carbon (C I) transitions in order to perform a curve of growth analysis. A.. 2 test constrains the best-fit Doppler parameter, b = 0.33(-0.04)(+0.05) km s(-1) and log N(C I) = 13.30 +/- 0.2 cm(-2). This Doppler parameter constrains the kinetic temperature of the gas to T <= 78 K (T <= 115 K, 2 sigma). We used the associated C I fine structure lines to constrain the volume density of the gas, n(H I) similar to 40-200 cm(-3) (2 sigma), resulting in a lower limit on the cloud size of approximately 0.1-1 parsec. While it is difficult to determine the metallicity of the cold component, the absence of Cr II indicates that the cold cloud suffers a high level of dust depletion. Additionally, the large amount of Lyman and Werner-band molecular hydrogen absorption (log N(H-2)(total) = 19.88 cm(-2), f(H2) >= 0.06) with an excitation temperature of T-ex = 46 K as determined by the rotational J = 0 and J = 1 states, is consistent with the presence of cold gas. We propose that this cloud may be gravitationally confined and may represent a transition gas phase from primarily neutral atomic gas, to a colder, denser molecular phase that will eventually host star formation.

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