Characterization of Stellar Spots in Next-Generation Microlensing Surveys
arXiv:0912.0588 · doi:10.1088/0004-637X/709/1/327
Abstract
One of the important microlensing applications to stellar atmospheres is the study of spots on stellar surface provided by the high resolution of caustic-crossing binary-lens events. In this paper, we investigate the characteristics of spot-induced perturbations in microlensing light curves and explain the physical background of the characteristics. We explore the variation of the spot-induced perturbations depending on various parameters characterizing the spot and investigate how well these parameters can be retrieved from observations in high-cadence future lensing surveys. From this, we find that although it would not be easy to precisely constrain the shape and the surface brightness contrast, the size and location of the spot on the stellar surface can be fairly well constrained from the analysis of lensing light curves.
5 pages, 4 figures, 1 table
References in corpus (1)
Cited by in corpus (5)
- Gravitational Microlensing I: A Unique Astrophysical Tool
- Detecting stellar spots through polarimetry observations of microlensing events in caustic-crossing
- Compact object detection in self-lensing binary systems with a main-sequence star
- Modeling Multi-Wavelength Stellar Astrometry. II. Determining Absolute Inclinations, Gravity Darkening Coefficients, and Spot Parameters of Single Stars with SIM Lite
- Variation of the stellar color in high-magnification and caustic-crossing microlensing events