Saved in:
Bibliographic Details
Main Authors: Chen, Pinjian, Chen, Bingqiu, Chen, Xiaodian, Yuan, Haibo, Shi, Jianrong, Wang, Shu, Li, Chunqian, Wang, Jiyu, Zhang, Jianxing, Ren, Yi
Format: Preprint
Published: 2026
Subjects:
Online Access:https://arxiv.org/abs/2601.02960
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866918274086731776
author Chen, Pinjian
Chen, Bingqiu
Chen, Xiaodian
Yuan, Haibo
Shi, Jianrong
Wang, Shu
Li, Chunqian
Wang, Jiyu
Zhang, Jianxing
Ren, Yi
author_facet Chen, Pinjian
Chen, Bingqiu
Chen, Xiaodian
Yuan, Haibo
Shi, Jianrong
Wang, Shu
Li, Chunqian
Wang, Jiyu
Zhang, Jianxing
Ren, Yi
contents We report the discovery of LAMOST J0041+3948, the most luminous post-AGB Type II Cepheid (TIIC) known, located in the Andromeda Giant Stellar Stream. Its spectral energy distribution (SED) exhibits a strong near-infrared excess, indicating the presence of a circumbinary dusty disk and hence binarity. SED fitting yields an effective temperature of $T_{\rm eff}=6738_{-262}^{+234}\,$K and a post-AGB luminosity of $\log(L/L_{\odot})=4.32_{-0.08}^{+0.07}$. Comparison with theoretical evolutionary tracks suggests a ~$2.0$-$4.0\,M_{\odot}$ progenitor when accounting for a possible scattered-light contribution. ZTF Light curves reveal a pulsation period of 89d that lies close to the period-luminosity relation for long-period RV Tauri stars. Follow-up spectroscopy reveals clear $s$-process enrichment and signatures consistent with an accretion disk around the companion. The inferred progenitor is significantly younger and more massive than a typical stream member, suggesting that an additional mechanism such as a stellar merger is required. We propose a formation channel in which the present post-AGB binary descends from a hierarchical triple system. In this scenario, the inner binary merged after the system was displaced to its current location by the galaxy merger event, and the resulting massive merger remnant subsequently evolved into the extremely luminous post-AGB star observed today.
format Preprint
id arxiv_https___arxiv_org_abs_2601_02960
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Discovery of an Extremely Luminous Type II Cepheid in the Andromeda Giant Stellar Stream: Evidence for a Hierarchical Triple with an Inner Binary Merger
Chen, Pinjian
Chen, Bingqiu
Chen, Xiaodian
Yuan, Haibo
Shi, Jianrong
Wang, Shu
Li, Chunqian
Wang, Jiyu
Zhang, Jianxing
Ren, Yi
Solar and Stellar Astrophysics
Astrophysics of Galaxies
We report the discovery of LAMOST J0041+3948, the most luminous post-AGB Type II Cepheid (TIIC) known, located in the Andromeda Giant Stellar Stream. Its spectral energy distribution (SED) exhibits a strong near-infrared excess, indicating the presence of a circumbinary dusty disk and hence binarity. SED fitting yields an effective temperature of $T_{\rm eff}=6738_{-262}^{+234}\,$K and a post-AGB luminosity of $\log(L/L_{\odot})=4.32_{-0.08}^{+0.07}$. Comparison with theoretical evolutionary tracks suggests a ~$2.0$-$4.0\,M_{\odot}$ progenitor when accounting for a possible scattered-light contribution. ZTF Light curves reveal a pulsation period of 89d that lies close to the period-luminosity relation for long-period RV Tauri stars. Follow-up spectroscopy reveals clear $s$-process enrichment and signatures consistent with an accretion disk around the companion. The inferred progenitor is significantly younger and more massive than a typical stream member, suggesting that an additional mechanism such as a stellar merger is required. We propose a formation channel in which the present post-AGB binary descends from a hierarchical triple system. In this scenario, the inner binary merged after the system was displaced to its current location by the galaxy merger event, and the resulting massive merger remnant subsequently evolved into the extremely luminous post-AGB star observed today.
title Discovery of an Extremely Luminous Type II Cepheid in the Andromeda Giant Stellar Stream: Evidence for a Hierarchical Triple with an Inner Binary Merger
topic Solar and Stellar Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2601.02960