Post-AGB candidate IRAS 02143+5852: Cepheid-like variability, three-layer circumstellar dust envelope and spectral features

Author:

Ikonnikova N P1ORCID,Burlak M A1ORCID,Dodin A V1ORCID,Shugarov S Yu12,Belinski A A1,Fedoteva A A1,Tatarnikov A M13ORCID,Rudy R J4,Perry R B5,Zheltoukhov S G13ORCID,Atapin K E1ORCID

Affiliation:

1. Sternberg Astronomical Institute, Lomonosov Moscow State University , Moscow 119234 , Russia

2. Astronomical Institute of the Slovak Academy of Sciences , Tatranska Lomnica 05960 , Slovakia

3. Faculty of Physics, Lomonosov Moscow State University , Moscow 119991 , Russia

4. Kookoosint Scientific , 1530 Calle Portada, Camarillo, CA 93010 , USA

5. Alabaster Scientific , PO Box 120, Irvington, VA 22480 , USA

Abstract

ABSTRACT We present the results of multicolour UBVRCICJHK photometry, spectroscopic analysis and spectral energy distribution (SED) modelling for the post-AGB candidate IRAS 02143+5852. We detected Cepheid-like light variations with the full peak-to-peak amplitude ΔV ∼ 0.9 mag and the pulsation period of about 24.9 d. The phased light curves appeared typical for the W Vir Cepheids. The period–luminosity relation for the Type II Cepheids yielded the luminosity logL/L⊙ ∼ 2.95. From a low-resolution spectrum, obtained at maximum brightness, the following atmospheric parameters were determined: Teff ∼ 7400 K and logg ∼ 1.38. This spectrum contains the emission lines H α, ${\rm Ba\, {\small II}}$ λ6496.9, ${\rm He\, {\small I}}$λ10830, and Pa β. Spectral monitoring performed in 2019–2021 showed a significant change in the H α profile and appearance of CH and CN molecular bands with pulsation phase. The metal lines are weak. Unlike typical W Vir variables, the star shows a strong excess of infrared radiation associated with the presence of a heavy dust envelope around the star. We modelled the SED using our photometry and archival data from different catalogues and determined the parameters of the circumstellar dust envelope. We conclude that IRAS 02143+5852 is a low-luminosity analogue of dusty RV Tau stars.

Funder

Slovak Research and Development Agency

Slovak Academy of Sciences

Robert Sterling Clark Foundation

Publisher

Oxford University Press (OUP)

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