We analysed solar-like oscillations in 1523 Kepler red giants which have previously been misclassified as subgiants, with predicted νmax values (based on the Kepler Input Catalogue) between 280μHz to 700μHz. We report the discovery of 626 new oscillating red giants in our sample, in addition to 897 oscillators that were previously characterized by Hekker et al. (2011) from one quarter of Kepler data. Our sample increases the known number of oscillating low-luminosity red giants by 26% (up to ∼ 1900 stars). About three quarters of our sample are classified as ascending red-giant-branch stars, while the remainder are red-clump stars. A novel scheme was applied to determine Δν for 108 stars with νmax close to the Nyquist frequency (240μHz < νmax < 320μHz). Additionally, we identified 47 stars oscillating in the super-Nyquist frequency regime, up to 387μHz, using long-cadence light curves. We show that the misclassifications are most likely due to large uncertainties in KIC surface gravities, and do not result from the absence of broadband colors or from different physical properties such as reddening, spatial distribution, mass or metallicity. The sample will be valuable to study oscillations in low-luminosity red giants and to characterize planet candidates around those stars.
@article{arxiv.1608.05803,
title = {Asteroseismology of 1523 misclassified red giants using $\textit{Kepler}$ data},
author = {Jie Yu and Daniel Huber and Timothy R. Bedding and Dennis Stello and Simon J. Murphy and Maosheng Xiang and Shaolan Bi and Tanda Li},
journal= {arXiv preprint arXiv:1608.05803},
year = {2016}
}
Comments
Accepted for publication in MNRAS, 12 pages, 12 figures, 1 table