Accurate p-mode measurements of the G0V metal-rich CoRoT target HD 52265
J. Ballot, L. Gizon, R. Samadi, G. Vauclair, O. Benomar, H. Bruntt, B., Mosser, T. Stahn, G. A. Verner, T. L. Campante, R. A. Garc\'ia, S. Mathur, D., Salabert, P. Gaulme, C. R\'egulo, I. W. Roxburgh, T. Appourchaux, F. Baudin,, C. Catala, W. J. Chaplin, S. Deheuvels, E. Michel

TL;DR
This study combines spectroscopic and seismic data from CoRoT observations to precisely characterize the fundamental parameters and oscillation modes of the metal-rich G0V star HD 52265, an exoplanet host.
Contribution
It provides the first detailed seismic analysis of HD 52265, including mode frequencies, rotation, and granulation properties, using a global fit of the oscillation spectrum.
Findings
Measured 31 mode frequencies between 1500-2550 micro-Hz.
Determined stellar parameters: Teff=6100K, log g=4.35, [M/H]=0.19.
Detected differential rotation and mode lifetimes between 0.5-3 days.
Abstract
The star HD 52265 is a G0V metal-rich exoplanet-host star observed in the seismology field of the CoRoT space telescope from November 2008 to March 2009. The satellite collected 117 days of high-precision photometric data on this star, showing that it presents solar-like oscillations. HD 52265 was also observed in spectroscopy with the Narval spectrograph at the same epoch. We characterise HD 52265 using both spectroscopic and seismic data. The fundamental stellar parameters of HD 52265 were derived with the semi-automatic software VWA, and the projected rotational velocity was estimated by fitting synthetic profiles to isolated lines in the observed spectrum. The parameters of the observed p modes were determined with a maximum-likelihood estimation. We performed a global fit of the oscillation spectrum, over about ten radial orders, for degrees l=0 to 2. We also derived the properties…
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