Theoretical insights into the RR Lyrae K-band Period-Luminosity relation
arXiv:astro-ph/0105481 · doi:10.1046/j.1365-8711.2001.04655.x
Abstract
Based on updated nonlinear, convective pulsation models computed for several values of stellar mass, luminosity and metallicity, theoretical constraints on the K-band Period-Luminosity (PLK) relation of RR Lyrae stars are presented. We show that for each given metal content the predicted PLK is marginally dependent on uncertainties of the stellar mass and/or luminosity. Then, by considering the RR Lyrae masses suggested by evolutionary computations for the various metallicities, we obtain that the predicted infrared magnitude M_K over the range 0.0001< Z <0.02 is given by the relation MK=0.568-2.071logP+0.087logZ-0.778logL/Lo, with a rms scatter of 0.032 mag. Therefore, by allowing the luminosities of RR Lyrae stars to vary within the range covered by current evolutionary predictions for metal-deficient (0.0001< Z <0.006) horizontal branch models, we eventually find that the infrared Period-Luminosity- Metallicity (PLZK) relation is MK=0.139-2.071(logP+0.30)+0.167logZ, with a total intrinsic dispersion of 0.037 mag. As a consequence, the use of such a PLZK relation should constrain within +-0.04 mag the infrared distance modulus of field and cluster RR Lyrae variables, provided that accurate observations and reliable estimates of the metal content are available. Moreover, we show that the combination of K and V measurements can supply independent information on the average luminosity of RR Lyrae stars, thus yielding tight constraints on the input physics of stellar evolution computations. Finally, for globular clusters with a sizable sample of first overtone variables, the reddening can be estimated by using the PLZK relation together with the predicted MV-logP relation at the blue edge of the instability strip (Caputo et al. 2000).
8 pages, including 5 postscript figures, accepted for publication on MNRAS
Cited by in corpus (67)
- The RR Lyrae Period-Luminosity Relation. I. Theoretical Calibration
- On a new theoretical framework for RR Lyrae stars I: the metallicity dependence
- Clustering of Local Group distances: publication bias or correlated measurements? I. The Large Magellanic Cloud
- A pulsational approach to near infrared and visual magnitudes of RR Lyrae stars
- The Carnegie-Chicago Hubble Program. I. An Independent Approach to the Extragalactic Distance Scale Using only Population II Distance Indicators
- The RR Lyrae Period - K Luminosity relation for Globular Clusters: an observational approach
- The Araucaria Project. The Distance to the Sculptor dwarf spheroidal galaxy from infrared photometry of RR Lyrae stars
- RR Lyrae stars in Galactic globular clusters.III. Pulsational predictions for metal content Z=0.0001 to Z=0.006
- Gaia Data Release 1. Testing the parallaxes with local Cepheids and RR Lyrae stars
- 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
- The period-luminosity relation for type II Cepheids in globular clusters
- Old-Aged Stellar Population Distance Indicators
- RR Lyrae stars in Galactic globular clusters. II. A theoretical approach to variables in M3
- HST Snaphot Study of Variable Stars in Globular Clusters: Inner Region of NGC 6441
- A pulsational distance to Omega Centauri based on Near-Infrared Period-Luminosity relations of RR Lyrae stars
- The Hubble Space Telescope Survey of M31 Satellite Galaxies I. RR Lyrae-based Distances and Refined 3D Geometric Structure
- The distance to the LMC cluster Reticulum from the K-band Period-Luminosity-Metallicity relation of RR Lyrae stars
- The Araucaria Project. The Distance to the Small Magellanic Cloud from Near-Infrared Photometry of RR Lyrae Variables
- Variable Stars in Local Group Galaxies. I: Tracing the Early Chemical Enrichment and Radial Gradients in the Sculptor dSph with RR Lyrae Stars
- RR Lyrae variables in Galactic globular clusters: IV. Synthetic HB and RR Lyrae predictions
- On the RR Lyrae stars in globulars: IV. Centauri Optical UBVRI Photometry
- Properties of RR Lyrae stars in the Inner Regions of the Large Magellanic Cloud
- On a new theoretical framework for RR Lyrae stars II: Mid--Infrared Period--Luminosity--Metallicity Relations
- Standard Galactic Field RR Lyrae II: A Gaia DR2 calibration of the period-Wesenheit-metallicity relation
- The Carina Project: I. Bright Variable Stars
- BVI time series data of the Galactic Globular Cluster NGC3201. I. RR Lyrae stars
- Variable stars in the VVV globular clusters. I. 2MASS-GC02 and Terzan10
- The Araucaria Project. The Distance of the Large Magellanic Cloud from Near-Infrared Photometry of RR Lyrae Variables
- Distance to Galactic globulars using the near-infrared magnitudes of RR Lyrae stars: IV. The case of M5 (NGC5904)
- On the Impact of Helium Content on the RR Lyrae Distance Scale
- Near-Infrared Observations of RR Lyrae variables in Galactic Globular Clusters: I. The case of M92
- The VVV Survey RR Lyrae Population in the Galactic Centre Region
- On the distance of the globular cluster M4 (NGC 6121) using RR Lyrae stars: II. Mid-infrared period-luminosity relations
- Synthetic properties of bright metal-poor variables. I. "Anomalous" Cepheids
- The ISLAnds Project III: Variable Stars in Six Andromeda Dwarf Spheroidal Galaxies
- Toward an internally consistent astronomical distance scale
- New Near-Infrared light-curve templates for RR Lyrae variables
- Predicted and empirical radii of RR Lyrae stars
- Chemical Compositions of Field and Globular Cluster RR~Lyrae Stars: II. omega Centauri
- Study of Globular Cluster M53: new variables, distance, metallicity
- The Araucaria Project: The distance to the Carina Dwarf Galaxy from infrared photometry of RR Lyrae stars
- The Araucaria Project: The distance to the Fornax Dwarf Galaxy from near-infrared photometry of RR Lyrae stars
- Precision distances to dwarf galaxies and globular clusters from Pan-STARRS1 3 RR Lyrae
- The Carnegie RR Lyrae Program: Mid-infrared Period-Luminosity relations of RR Lyrae stars in Reticulum
- Variable stars in Local Group Galaxies -- V. The fast and early evolution of the low-mass Eridanus II dSph galaxy
- On the variation of light curve parameters of RR Lyrae variables at multiple wavelengths
- SMHASH: Anatomy of the Orphan Stream using RR Lyrae stars
- New type II Cepheids from VVV data towards the Galactic center
- On the pulsation parallax of the variable star RR Lyr
- The RR Lyrae Star Period - K-band Luminosity Relation of the Globular Cluster M3
- Variable Stars in Local Group Galaxies. IV. RR Lyrae stars in the central regions of the low-density galaxy Crater II
- Plan beta: Core or Cusp?
- The Swift/UVOT Stars Survey. II. RR Lyrae Stars in M 3 and M 15
- New Near-Infrared Period-Luminosity-Metallicity Relations for Galactic RR Lyrae Stars Based on Gaia EDR3 Parallaxes
- The distance to IC4499 from K-band photometry of 32 RR Lyrae stars
- The Distance of the First Overtone RR Lyrae Variables in the MACHO LMC Database: A New Method to Correct for the Effects of Crowding
- Gaia Parallax Zero Point From RR Lyrae Stars
- Multi-wavelength Photometric Study of RR Lyrae Variables in the Globular Cluster NGC 5272 (Messier 3)
- SMHASH: A new mid-infrared RR Lyrae distance determination for the Local Group dwarf spheroidal galaxy Sculptor
- Predicting light curves of RR Lyrae variables using artificial neural network based interpolation of a grid of pulsation models
- Distance determination from the Cepheids and RR Lyrae period-luminosity relations
- A joint 1% calibration of the RR Lyrae & type-II Cepheid Leavitt laws yields homogeneous distances to 93 Galactic globular clusters
- Extraction of Physical Parameters of RRab Variables using Neural Network based Interpolator
- The CUBES Science Case
- RR Lyrae stars in the outer region of the globular cluster M3: a shortage of long periods at r ~ 3.5 to 6 arcmin ?
- Zwicky Transient Facility and Globular Clusters: The RR Lyrae gri-Band Period-Luminosity-Metallicity and Period-Wesenheit-Metallicity Relations
- New theoretical Period-Luminosity-Metallicity relations for RR Lyrae in the Rubin-LSST filters