Mira variables in globular clusters are used as a new, independent distance anchor, yielding a 3.7% Hubble constant of 73.06 ± 2.67 km/s/Mpc.
Distances and absolute magnitudes from trigonometric parallaxes
1 Pith paper cite this work, alongside 13 external citations. Polarity classification is still indexing.
abstract
We first review the current knowledge of Hipparcos systematic and random errors, in particular small-scale correlations. Then, assuming Gaussian parallax errors and using examples from the recent Hipparcos literature, we show how random errors may be misinterpreted as systematic errors, or transformed into systematic errors. Finally we summarise how to get unbiased estimates of absolute magnitudes and distances, using either Bayesian or non-parametrical methods. These methods may be applied to get either mean quantities or individual estimates. In particular, we underline the notion of astrometry-based luminosity, which avoids the truncation biases and allows a full use of Hipparcos samples.
fields
astro-ph.GA 1years
2025 1verdicts
CONDITIONAL 1representative citing papers
citing papers explorer
-
Absolute Calibration of Cluster Mira Variables to Provide a New Anchor for the Hubble Constant Determination
Mira variables in globular clusters are used as a new, independent distance anchor, yielding a 3.7% Hubble constant of 73.06 ± 2.67 km/s/Mpc.