Please use this identifier to cite or link to this item: http://hdl.handle.net/2248/8125
Title: Fundamental parameters of barium and CH stars from asteroseismic analysis: HD 33409, HD 20084 and HD 66812
Authors: Sonamben, Mayani
Goswami, A
Keywords: Stars: fundamental parameters
Stars: individual
Stars: asteroseismology
Issue Date: Dec-2022
Publisher: Indian Academy of Sciences
Citation: Journal of Astrophysics and Astronomy, Vol. 43, No. 2, 92
Abstract: Asteroseismic analysis of stars using space mission data, such as the transiting exoplanet survey satellite (TESS) allows us to derive accurate fundamental parameters of stars. Barium and CH stars are believed to be in binary systems with a now invisible white dwarf companion. Knowledge of accurate fundamental parameters of these stars is essential to understand the origin of the peculiar abundance patterns observed in these stars. In this work, we have presented estimates of the fundamental parameters derived using asteroseismic analysis for three objects HD 33409, HD 20084 and HD 66812 selected from barium and CH stars catalogs. We have analysed the TESS photometric data using lightkurve Python package employing the aperture photometry, derived the asteroseismic parameters, and using scaling relations, calculated the stellar parameters. We have estimated power excess ðmmaxÞ at 44:50 0:50 lHz and large frequency separation ðDmÞ to be 4:77 0:10 lHz for HD 33409. These two values for HD 20084 and HD 66812 are (48:50 0:50 lHz, 4:88 0:10 lHz) and (22:50 0:50 lHz, 2:47 0:10 lHz), respectively. Our results showed that the primary component is a giant branch star with mass, radius, surface gravity and luminosity logðL=L) of 1:46 0:07 M, 10:54 0:12 R, 2:56 0:01 dex and 1.71, respectively, for HD 33409. These values for HD 20084 and HD 66812 are (1:84 0:07 M, 11:21 0:12 R, 2:60 0:01 dex, 1.87) and (2:78 0:07 M, 20:26 0:12 R, 2:27 0:01 dex, 2.37), respectively. The estimated stellar parameters obtained from asteroseismology are compared with literature values whenever possible and found to be in fair agreement with spectroscopic estimates. Stellar mass derived using parallax method is also found to be in close agreement in the case of HD 33409 and HD 20084. While the parallax method gives mass value of 4 M for HD 66812, the asteroseismic estimate is much smaller 2.78 M for this object.
Description: Restricted Access
The original publication is available at springerlink.com
URI: http://hdl.handle.net/2248/8125
ISSN: 0973-7758
Appears in Collections:IIAP Publications

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