Limb darkening in spherical stellar atmospheres
arXiv:1105.0197 · doi:10.1051/0004-6361/201116623
Abstract
(Abridged) Context. Stellar limb darkening, I(μ = cosθ), is an important constraint for microlensing, eclipsing binary, planetary transit, and interferometric observations, but is generally treated as a parameterized curve, such as a linear-plus-square-root law. Many analyses assume limb-darkening coefficients computed from model stellar atmospheres. However, previous studies, using I(μ) from plane- parallel models, have found that fits to the flux-normalized curves pass through a fixed point, a common μ location on the stellar disk, for all values of T eff, log g and wavelength. Aims. We study this fixed μ-point to determine if it is a property of the model stellar atmospheres or a property of the limb-darkening laws. Furthermore, we use this limb-darkening law as a tool to probe properties of stellar atmospheres for comparison to limb- darkening observations. Methods. Intensities computed with plane-parallel and spherically-symmetric Atlas models (characterized by the three fundamental parameters L\star, M\star and R\star) are used to reexamine the existence of the fixed μ-point for the parametrized curves. Results. We find that the intensities from our spherical models do not have a fixed point, although the curves do have a minimum spread at a μ-value similar to the parametrized curves. We also find that the parametrized curves have two fixed points, μ1 and μ2, although μ2 is so close to the edge of the disk that it is missed using plane-parallel atmospheres. We also find that the spherically- symmetric models appear to agree better with published microlensing observations relative to plane-parallel models.
8 pages, 8 figures, figures 4 and 6 have lower resolution. A&A in press
References in corpus (5)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Homogeneous studies of transiting extrasolar planets. I. Light curve analyses
- Using Stellar Limb-Darkening to Refine the Properties of HD 209458b
- Computing Limb Darkening Coefficients from Stellar Atmosphere Models
- SAtlas: Spherical Versions of the Atlas Stellar Atmosphere Program
Cited by in corpus (13)
- The effect of stellar limb darkening values on the accuracy of the planet radii derived from photometric transit observations
- High precision transit observations of the exoplanet WASP-13b with the RISE instrument
- Spherically-symmetric model stellar atmospheres and limb darkening I: limb-darkening laws, gravity-darkening coefficients and angular diameter corrections for red giant stars
- Spherically symmetric model stellar atmospheres and limb darkening II: limb-darkening laws, gravity-darkening coefficients and angular diameter corrections for FGK dwarf stars
- Calibrating the projection factor for Galactic Cepheids
- Cepheid limb darkening, angular diameter corrections, and projection factor from static spherical model stellar atmospheres
- Global properties of the light curves of magnetic, chemically peculiar stars as a testbed for the existence of dipole-like symmetry in surface structures
- Limb Darkening and Planetary Transits: Testing Center-to-limb Intensity Variations and Limb-Darkening Directly from Model Stellar Atmospheres
- Using limb darkening to measure fundamental parameters of stars
- Night Vision for Small Telescopes
- Stellar atmospheres, atmospheric extension and fundamental parameters: weighing stars using the stellar mass index
- Indicators of Mass in Spherical Stellar Atmospheres
- Limb Darkening and Planetary Transits II: Intensity profile correction factors for a grid of model stellar atmospheres