4.7 Article

Galaxy clustering dependence on the [O II] emission line luminosity in the local Universe

期刊

出版社

OXFORD UNIV PRESS
DOI: 10.1093/mnras/stx1980

关键词

galaxies: distances and redshifts; galaxies: haloes; galaxies: statistics; large-scale structure of Universe; cosmology: observations; cosmology: theory

资金

  1. European Space Agency (ESA) Research Fellowship at the European Space Astronomy Center (ESAC) in Madrid, Spain
  2. Spanish MICINN Consolider-Ingenio Programme under grant MultiDark [CSD2009 - 00064]
  3. MINECO Centro de Excelencia Severo Ochoa Programme [SEV-2012-0249]
  4. MINECO grant [AYA2014-60641-C2-1-P]
  5. MINECO (Spain) [AYA2012 - 31101]
  6. PRACE [2012060963]
  7. Alfred P. Sloan Foundation
  8. National Science Foundation
  9. U.S. Department of Energy
  10. National Aeronautics and Space Administration
  11. Japanese Monbukagakusho
  12. Max Planck Society
  13. Higher Education Funding Council for England
  14. American Museum of Natural History
  15. Astrophysical Institute Potsdam
  16. University of Basel
  17. University of Cambridge
  18. Case Western Reserve University
  19. University of Chicago
  20. Drexel University
  21. Fermilab
  22. Institute for Advanced Study
  23. Japan Participation Group
  24. Johns Hopkins University
  25. Joint Institute for Nuclear Astrophysics
  26. Kavli Institute for Particle Astrophysics and Cosmology
  27. Korean Scientist Group
  28. Chinese Academy of Sciences (LAMOST)
  29. Los Alamos National Laboratory
  30. Max-Planck-Institute for Astronomy (MPIA)
  31. Max-Planck-Institute for Astrophysics (MPA)
  32. New Mexico State University
  33. Ohio State University
  34. University of Pittsburgh
  35. University of Portsmouth
  36. Princeton University
  37. United States Naval Observatory
  38. University of Washington

向作者/读者索取更多资源

We study the galaxy clustering dependence on the [O II] emission line luminosity in the SDSS DR7 Main galaxy sample at mean redshift z similar to 0.1. We select volume-limited samples of galaxies with different [O II] luminosity thresholds and measure their projected, monopole and quadrupole two-point correlation functions. We model these observations using the 1 h(-1) Gpc MultiDark-Planck cosmological simulation and generate light cones with the SUrvey GenerAtoR algorithm. To interpret our results, we adopt a modified (Sub) Halo Abundance Matching scheme, accounting for the stellar mass incompleteness of the emission line galaxies. The satellite fraction constitutes an extra parameter in this model and allows to optimize the clustering fit on both small and intermediate scales (i.e. r(p) less than or similar to 30 h(-1) Mpc), with no need of any velocity bias correction. We find that, in the local Universe, the [O II] luminosity correlates with all the clustering statistics explored and with the galaxy bias. This latter quantity correlates more strongly with the SDSS r-band magnitude than [O II] luminosity. In conclusion, we propose a straightforward method to produce reliable clustering models, entirely built on the simulation products, which provides robust predictions of the typical ELG host halo masses and satellite fraction values. The SDSS galaxy data, MultiDark mock catalogues and clustering results are made publicly available.

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