Cepheids in external galaxies. I. The maser-host galaxy NGC 4258 and the metallicity dependence of P-L and P-W relations
arXiv:0805.1592 · doi:10.1086/589965
Abstract
We perform a detailed analysis of Cepheids in NGC 4258, Magellanic Clouds and Milky Way in order to verify the reliability of the theoretical scenario based on a large set of nonlinear convective pulsation models. We derive Wesenheit functions from the synthetic BVI magnitudes of the pulsators and we show that the sign and the extent of the metallicity effect on the predicted Period-Wesenheit (P-W) relations change according to the adopted passbands. These P-W relations are applied to measured BVI magnitudes of NGC 4258, Magellanic and Galactic Cepheids available in the literature. We find that Magellanic and Galactic Cepheids agree with the metallicity dependence of the predicted P-W relations. Concerning the NGC 4258 Cepheids, the results strongly depend on the adopted metallicity gradient across the galactic disc. The most recent nebular oxygen abundances support a shallower gradient and provide a metallicity dependence that agrees well with current pulsation predictions. Moreover, the comparison of Cepheid distances based on VI magnitudes with distance estimates based on the revised TRGB method for external galaxies, on the HST trigonometric parallaxes for Galactic Cepheids, and on eclipsing binaries in the Magellanic Clouds seems to favor the metallicity correction predicted by pulsation models. The sign and the extent of the metallicity dependence of the Period-Wesenheit and of the Period-Luminosity relations change according to the adopted passbands. Therefore, distances based on different methods and/or bands should not be averaged. The use of extragalactic Cepheids to constrain the metallicity effect requires new accurate and extensive nebular oxygen measurements.
accepted for publication on ApJ
References in corpus (7)
- A new Cepheid distance to the maser-host galaxy NGC 4258 and its implications for the Hubble Constant
- A new calibration of Galactic Cepheid Period-Luminosity relations from B to K bands, and a comparison to LMC PL relations
- The Helium abundance and Delta Y / Delta Z in Lower Main Sequence stars
- Planetary Nebula Abundances and Morphology: Probing the Chemical Evolution of the Milky Way
- Comparison of Distances from RR Lyrae Stars, the Tip of the Red-Giant Branch and Classical Cepheids
- Classical Cepheid Pulsation Models. XI. Effects of convection and chemical composition on the Period-Luminosity and Period-Wesenheit relations
- The Araucaria Project. The Distance to the Local Group Galaxy WLM from Cepheid Variables discovered in a Wide-Field Imaging Survey
Cited by in corpus (16)
- Measurements of the Hubble Constant: Tensions in Perspective
- Extragalactic chemical abundances: do HII regions and young stars tell the same story? The case of the spiral galaxy NGC 300
- The influence of chemical composition on the properties of Cepheid stars. II-The iron content
- Clustering of Local Group distances: publication bias or correlated measurements? I. The Large Magellanic Cloud
- Clustering of Local Group distances: publication bias or correlated measurements? III. The Small Magellanic Cloud
- On the distance of the globular cluster M4 (NGC 6121) using RR Lyrae stars: I. optical and near-infrared Period-Luminosity and Period-Wesenheit relations
- On the RR Lyrae stars in globulars: IV. Centauri Optical UBVRI Photometry
- An Improved Calibration of the Wavelength Dependence of Metallicity on the Cepheid Leavitt law
- The influence of metallicity on the Leavitt Law from geometrical distances of Milky Way and Magellanic Clouds Cepheids
- Temperature Differences in the Cepheid Instability Strip Require Differences in the Period-Luminosity Relation in Slope and Zero Point
- The Cepheid distance to the maser-host galaxy NGC 4258: Studying systematics with the Large Binocular Telescope
- Metallicity estimation of MW, SMC and LMC classical Cepheids from the shape of the - and -band light curves
- The Milky Way as Seen by Classical Cepheids I: Distances Based on Mid-infrared Photometry
- New insights into the use of Ultra Long Period Cepheids as cosmological standard candles
- Non-evolutionary effects on period change in Magellanic Cepheids I. New binary systems revealed from Light Travel Time Effect
- Evidence for Photometric Contamination in Key Observations of Cepheids in the Benchmark Galaxy IC 1613