Near-infrared observations of OGLE classical and type II Cepheid variables in the LMC
arXiv:1806.06528 · doi:10.1017/S1743921318002776
Abstract
We present results from the Large Magellanic Cloud Near-infrared Synoptic Survey (LMCNISS) for classical and type II Cepheid variables that were identified by the Optical Gravitational Lensing Experiment (OGLE-III) catalogue. Multiwavelength time-series data for classical Cepheid variables are used to study light-curve structures as a function of period and wavelength. We exploit a sample of 1400 classical and 80 type II Cepheid variables to derive Period--Wesenheit relations that combine both optical and near-infrared data. The new Period--Luminosity and Wesenheit relations are used to estimate distances to several Local Group galaxies (using classical Cepheids) and to Galactic globular clusters (using type II Cepheids). By appealing to a statistical framework, we find that fundamental-mode classical Cepheid Period--Luminosity relations are non-linear around 10--18 days at optical and near-IR wavelengths. We also suggest that a non-linear relation provides a better constraint on the Cepheid Period--Luminosity relation in type Ia Supernovae host galaxies, though it has a negligible effect on the systematic uncertainties affecting the local measurement of the Hubble constant.
4 Pages, 2 figures, Proceedings IAU Symposium No. IAUS 339, 2018, Southern Horizons in Time-Domain Astronomy, Talk @OGLE25 workshop
References in corpus (7)
- A 2.4% Determination of the Local Value of the Hubble Constant
- An eclipsing binary distance to the Large Magellanic Cloud accurate to 2 per cent
- The period-luminosity relation for type II Cepheids in globular clusters
- On the distance of the Magellanic Clouds using Cepheid NIR and optical-NIR Period Wesenheit Relations
- The VMC Survey. XIII. Type II Cepheids in the Large Magellanic Cloud
- Large Magellanic Cloud Near-Infrared Synoptic Survey. IV. Leavitt Laws for Type II Cepheid Variables
- On the Variation of Fourier Parameters for Galactic and LMC Cepheids at Optical, Near-Infrared and Mid-Infrared Wavelengths