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A Helium-shell Burning Blue Horizontal Branch Star Produced from Common Envelope Evolution

Authors: Jiao Li, Changqing Luo, Hai-Liang Chen, Zhicun Liu, Bo Zhang, Shi Jia, Hongwei Ge, Tao Wu, Yuhan Yao, Pei Wang, Marat Gilfanov, You Wu, Zhenwei Li, Zhengwei Liu, Xiangcun Meng, Xue-Fei Chen, Philipp Podsiadlowski, Chao Liu, and Zhan-Wen HanPublished: 2026-08-12Paper ID: 2608.11557Category: astro-ph.SRLicense: CC BY 4.0

Abstract

Observationally, blue horizontal branch (BHB) stars are defined as hot stars occupying a characteristic region between the extreme blue horizontal branch and RR Lyrae variables in the Hertzsprung-Russell diagram. Most of them are interpreted as stripped core-helium-burning stars, but the role of binary interaction in their formation remains unclear. Here, we report the discovery of a metal-rich BHB star in a 0.82628-day binary system (Feige 64) comprising a $0.35\pm0.03\,M_{\odot}$ BHB star and a likely $1.26\pm0.17\,M_{\odot}$ white dwarf (WD). The BHB star has an effective temperature of $15{,}524\pm310$ K and a luminosity of $39.7\pm4.1\,L_{\odot}$. Stellar evolution modelling indicates that it is a helium-shell-burning star produced through the common-envelope channel, retaining a hydrogen-rich envelope that is more massive than previously thought for low-mass stars. This finding provides direct evidence for binary interaction in the formation of BHB stars, offering a fresh perspective on interpreting this emerging population.

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