TYC 2990-127-1: An Algol-type SB2 binary system of subgiant and red giant with a probable ongoing mass-transfer

ABSTRACT We present a study of the spectroscopic binary TYC 2990-127-1 from the LAMOST survey. We use full-spectrum fitting to derive radial velocities and spectral parameters. The high mass ratio indicates that the system underwent mass transfer in the past. We compute the orbital solution and find...

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Veröffentlicht in:Monthly notices of the Royal Astronomical Society 2022-05, Vol.513 (3), p.4295-4307
Hauptverfasser: Kovalev, Mikhail, Li, Zhenwei, Zhang, Xiaobin, Li, Jiangdan, Chen, Xuefei, Han, Zhanwen
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container_issue 3
container_start_page 4295
container_title Monthly notices of the Royal Astronomical Society
container_volume 513
creator Kovalev, Mikhail
Li, Zhenwei
Zhang, Xiaobin
Li, Jiangdan
Chen, Xuefei
Han, Zhanwen
description ABSTRACT We present a study of the spectroscopic binary TYC 2990-127-1 from the LAMOST survey. We use full-spectrum fitting to derive radial velocities and spectral parameters. The high mass ratio indicates that the system underwent mass transfer in the past. We compute the orbital solution and find that it is a very close sub-giant/red giant pair on circular orbit, slightly inclined to the sky-plane. Fitting of the TESS photometrical data confirms this and suggests an inclination of i ∼ 39.8°. The light curve and spectrum around Hα show signs of irregular variability, which supports ongoing mass transfer. The binary evolution simulations suggest that the binary may experience non-conservative mass transfer with accretion efficiency 0.3, and the binary will enter into common envelope (CE) phase in the subsequent evolution. The remnant product after the ejection of CE may be a detached double helium white dwarf (He WD) or a merger.
doi_str_mv 10.1093/mnras/stac1177
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title TYC 2990-127-1: An Algol-type SB2 binary system of subgiant and red giant with a probable ongoing mass-transfer
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