Automated extraction of oscillation parameters for Kepler observations of solar-type stars
arXiv:0910.2764
Abstract
The recent launch of the Kepler space telescope brings the opportunity to study oscillations systematically in large numbers of solar-like stars. In the framework of the asteroFLAG project, we have developed an automated pipeline to estimate global oscillation parameters, such as the frequency of maximum power (nu_max) and the large frequency spacing (Delta_nu), for a large number of time series. We present an effective method based on the autocorrelation function to find excess power and use a scaling relation to estimate granulation timescales as initial conditions for background modelling. We derive reliable uncertainties for nu_max and Delta_nu through extensive simulations. We have tested the pipeline on about 2000 simulated Kepler stars with magnitudes of V~7-12 and were able to correctly determine nu_max and Delta_nu for about half of the sample. For about 20%, the returned large frequency spacing is accurate enough to determine stellar radii to a 1% precision. We conclude that the methods presented here are a promising approach to process the large amount of data expected from Kepler.
14 pages, 9 figures, accepted for publication in Communications in Asteroseismology
Cited by in corpus (12)
- Weakened Magnetic Braking in the Exoplanet Host Star 51 Peg
- First Observations of the Brown Dwarf HD 19467 B with JWST
- Asteroseismology and Spectropolarimetry of the Exoplanet Host Star Serpentis
- Modeling Asteroseismic Yields for the Roman Galactic Bulge Time-Domain Survey
- Asteroseismic Study of Subgiants and Giants of the Open Cluster M67 using Kepler/K2: Expanded Sample and Precise Masses
- A simple method to measure numax for asteroseismology: application to 16,000 oscillating Kepler red giants
- Testing the wavelength dependence of oscillations and granulation in red giants using Kepler and TESS
- Acoustic modes in M67 cluster stars trace deepening convective envelopes
- Full abundance study of two newly discovered barium giants
- Seismic and spectroscopic analysis of 9 bright red giants observed by Kepler
- Halo Photometry and Asteroseismology for 98 of the Brightest Stars Observed by TESS
- Pushing the Limit of Asteroseismic Detection for Cool Dwarfs using TESS and Deep Learning