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Asteroseismology of the heartbeat star KIC 5006817

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arxiv 2011.08685 v1 pith:H6A5R5P2 submitted 2020-11-17 astro-ph.SR astro-ph.EP

classification astro-ph.SRastro-ph.EP
keywords dataodotspaceanalysisasteroseismicasteroseismologyheartbeatparameters
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abstract

This paper summarizes the project work on asteroseismology at the ERASMUS+ GATE 2020 Summer school on space satellite data. The aim was to do a global asteroseismic analysis of KIC 5006817 and quantify its stellar properties using the high-quality, state of the art space missions data. We employed the aperture photometry to analyze the data from the Kepler space telescope and the Transiting Exoplanet Survey Satellite (TESS). Using the lightkurve Python package, we have derived the asteroseismic parameters and calculated the stellar parameters using the scaling relations. Our analysis of KIC 5006817 confirmed its classification as a heartbeat binary. The rich oscillation spectrum facilitate estimating power excess ($\nu_{\rm max}$) at 145.50$\pm$0.50 $\mu$Hz and large frequency separation ($\Delta\nu$) to be 11.63$\pm$0.10 $\mu$Hz. Our results showed that the primary component is a low-luminosity, red-giant branch star with a mass, radius, surface gravity, and luminosity of 1.53$\pm$0.07 M$_\odot$, 5.91$\pm$0.12 R$_\odot$, 3.08$\pm$0.01 dex, and 19.66$\pm$0.73 L$_\odot$, respectively. The orbital period of the system is 94.83$\pm$0.05 d.

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  1. Astronomical Cardiology II: A Search For Heartbeat Stars Using APOGEE and TESS

    astro-ph.SR 2026-08 conditional novelty 6.0 of 10

    A new search of APOGEE binaries with TESS light curves finds 50 heartbeat stars, including 36 new systems, and confirms that the detected fraction rises sharply with stellar temperature.

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