4.7 Article

The Evolution of OI over 3.2 < z < 6.5: Reionization of the Circumgalactic Medium

期刊

ASTROPHYSICAL JOURNAL
卷 883, 期 2, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.3847/1538-4357/ab3eb5

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资金

  1. National Science Foundation [AST-1615814, AST-1751404]
  2. Independent Research Fund Denmark [DFF 4090-00079]
  3. Science and Technology Facilities Council [ST/P000541/1]
  4. European Research Council (ERC) under the European Union [757535]
  5. FONDECYT [1191232]
  6. ERC [740246]
  7. Australian Research Council Centre of Excellence for All Sky Astrophysics in 3 Dimensions (ASTRO 3D) [CE170100013]
  8. W.M. Keck Foundation
  9. National Aeronautics and Space Administration
  10. [UCh/VID-ENL18/18]
  11. [060.A-9024]
  12. [084.A-0360]
  13. [084.A-0390]
  14. [084.A-0550]
  15. [085.A-0299]
  16. [086.A-0162]
  17. [086.A-0574]
  18. [087.A-0607]
  19. [087.A-0890]
  20. [088.A-0897]
  21. [091.C-0934]
  22. [096.A-0095]
  23. [096.A-0418]
  24. [097.B1070]
  25. [098.A-0111]
  26. [098.B-0537]
  27. [0100.A-0243]
  28. [0100.A-0625]
  29. [0102.A-0154]
  30. [189.A-0424]
  31. [294.A-5031]
  32. STFC [ST/P000541/1] Funding Source: UKRI

向作者/读者索取更多资源

We present a survey for metal absorption systems traced by neutral oxygen over 3.2 < z < 6.5. Our survey uses Keck/ESI and VLT/X-Shooter spectra of 199 QSOs with redshifts up to 6.6. In total, we detect 74 OI absorbers, of which 57 are separated from the background QSO by more than 5000 km s(-1). We use a maximum likelihood approach to fit the distribution of OI lambda 1302 equivalent widths in bins of redshift and from this determine the evolution in number density of absorbers with W-1302 > 0.05 angstrom, of which there are 49 nonproximate systems in our sample. We find that the number density does not monotonically increase with decreasing redshift, as would naively be expected from the buildup of metal-enriched circumgalactic gas with time. The number density over 4.9 < z < 5.7 is a factor of 1.7-4.1 lower (68% confidence) than that over 5.7 < z < 6.5, with a lower value at z < 5.7 favored with 99% confidence. This decrease suggests that the fraction of metals in a low-ionization phase is larger at z similar to 6 than at lower redshifts. Absorption from highly ionized metals traced by CIV is also weaker in higher-redshift OI systems, supporting this picture. The evolution of OI absorbers implies that metal-enriched circumgalactic gas at z similar to 6 is undergoing an ionization transition driven by a strengthening ultraviolet background. This in turn suggests that the reionization of the diffuse intergalactic medium may still be ongoing at or only recently ended by this epoch.

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