Statistical analysis of the determinations of the Sun's Galactocentric distance
arXiv:1306.5519 · doi:10.1017/S1743921312021825
Abstract
Based on several tens of Ro measurements made during the past decades, several studies have been performed to derive the best estimate of Ro. Some used just simple averaging to derive a result, whereas others provided comprehensive analyses of possible errors in published results. In either case, detailed statistical analyses of data used were not performed. However, a computation of the best estimates of the Galactic rotation constants is not only an astronomical but also a metrological task. Here we perform an analysis of 53 Ro measurements (published in the past 20 years) to assess the consistency of the data. Our analysis shows that they are internally consistent. It is also shown that any trend in the Ro estimates from the last 20 years is statistically negligible, which renders the presence of a bandwagon effect doubtful. On the other hand, the formal errors in the published Ro estimates improve significantly with time.
Updated and abridged version of arxiv:1202.6128 conforming to the proceedings page limit
References in corpus (3)
- Analysis of Determinations of the Distance between the Sun and the Galactic Center
- The current best estimate of the Galactocentric distance of the Sun based on comparison of different statistical techniques
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- GALACTICNUCLEUS: A high angular resolution imaging survey of the Galactic Centre. I. Methodology, performance, and near-infrared extinction towards the Galactic Centre
- Models for the 3-D axisymmetric gravitational potential of the Milky Way Galaxy - A detailed modelling of the Galactic disk
- Toward an internally consistent astronomical distance scale
- Modelling resonances and orbital chaos in disk galaxies. Application to a Milky Way spiral model
- National Report for the International Association of Geodesy of the International Union of Geodesy and Geophysics 2011-2014