Asteroseismology of the heartbeat star KIC 5006817

IF 0.4 4区 物理与天体物理 Q4 ASTRONOMY & ASTROPHYSICS
J. Merc, Cs. Kalup, R. Rathour, J. S. Sánchez Arias, P. Beck
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引用次数: 4

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$0.05 d.
心跳星KIC 5006817的星震学
本文总结了2020年ERASMUS+ GATE暑期学校关于空间卫星数据的星震学项目工作。目的是对KIC 5006817进行全球星震分析,并利用高质量、最先进的太空任务数据量化其恒星特性。我们利用孔径光度法分析了开普勒太空望远镜和凌日系外行星巡天卫星(TESS)的数据。利用lightkurve Python包导出了星震参数,并利用标度关系计算了恒星参数。我们对KIC 5006817的分析证实了它是心跳双星。丰富的振荡频谱有助于估计功率过剩($\nu_{\rm max}$)在145.50 $\pm$ 0.50 $\mu$ Hz和大频率分离($\Delta\nu$)为11.63 $\pm$ 0.10 $\mu$ Hz。结果表明,该星系的主要成分是一颗低光度红巨星分支星,其质量、半径、表面重力和光度分别为1.53 $\pm$ 0.07 M $_\odot$、5.91 $\pm$ 0.12 R $_\odot$、3.08 $\pm$ 0.01 dex和19.66 $\pm$ 0.73 L $_\odot$。该系统的轨道周期为94.83 $\pm$ 0.05 d。
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来源期刊
CiteScore
1.10
自引率
20.00%
发文量
4
审稿时长
>12 weeks
期刊介绍: Contributions of the Astronomical Observatory Skalnate Pleso" (CAOSP) is published by the Astronomical Institute of the Slovak Academy of Sciences (SAS). The journal publishes new results of astronomical and astrophysical research, preferentially covering the fields of Interplanetary Matter, Stellar Astrophysics and Solar Physics. We publish regular papers, expert comments and review contributions.
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