TL;DR
This study analyzes over 16,000 Kepler red giants to produce a comprehensive catalog of their oscillation and granulation properties, enabling improved stellar characterization and insights into stellar evolution.
Contribution
It provides the first homogeneous catalog of asteroseismic parameters for a large red giant sample, revealing differences between evolutionary stages and dependencies on metallicity.
Findings
Confirmed differences between RGB and HeB stars in oscillation properties.
Identified a sharp upper edge in oscillation amplitude distribution at fixed max.
Demonstrated metallicity influences oscillation amplitude and granulation power.
Abstract
The Kepler mission has provided exquisite data to perform an ensemble asteroseismic analysis on evolved stars. In this work we systematically characterize solar-like oscillations and granulation for 16,094 oscillating red giants, using end-of-mission long-cadence data. We produced a homogeneous catalog of the frequency of maximum power (typical uncertainty =1.6\%), the mean large frequency separation (=0.6\%), oscillation amplitude (=4.7\%), granulation power (=8.6\%), power excess width (=8.8\%), seismically-derived stellar mass (=7.8\%), radius (=2.9\%), and thus surface gravity (=0.01 dex). Thanks to the large red giant sample, we confirm that red-giant-branch (RGB) and helium-core-burning (HeB) stars collectively differ in the…
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