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Measuring the cosmological bulk flow using the peculiar velocities of supernovae

  • University of Cape Town

Research output: Contribution to journalArticlepeer-review

62 Scopus citations

Abstract

We study large-scale coherent motion in our universe using the existing Type IA supernovae data. If the recently observed bulk flow is real, then some imprint must be left on supernovae motion. We perform a Bayesian Monte Carlo Markov Chain analysis in various redshift bins and find a sharp contrast between the z < 0.05 and z > 0.05 data. The z < 0.05 data are consistent with the bulk flow in the direction (l,b) = (290+39-31°, 20+32-32°) with a magnitude of vbulk = 188+119-103km/s at 68% confidence. The significance of detection (compared to the null hypothesis) is 95%. In contrast, z > 0.05 data (which contains 425 of the 557 supernovae in the Union2 data set) show no evidence for the bulk flow. While the direction of the bulk flow agrees very well with previous studies, the magnitude is significantly smaller. For example, the Kashlinsky, et al.'s original bulk flow result of vbulk > 600km/s is inconsistent with our analysis at greater than 99.7% confidence level. Furthermore, our best-fit bulk flow velocity is consistent with the expectation for the ΛCDM model, which lies inside the 68% confidence limit.

Original languageEnglish
Article number015
JournalJournal of Cosmology and Astroparticle Physics
Volume2011
Issue number4
DOIs
StatePublished - Apr 2011

Keywords

  • cosmic flows
  • cosmological simulations
  • supernovas

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