A compact object with a K type star companion in the solar neighborhood: a wide post common envelope binary with a white dwarf candidate

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Main Authors: Lin, Jie, Chen, Hailiang, Wang, Bojun, Luo, Yudong, Tang, Wenshi, Huang, Bo
Format: Preprint
Published: 2026
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_version_ 1866910027117232128
author Lin, Jie
Chen, Hailiang
Wang, Bojun
Luo, Yudong
Tang, Wenshi
Huang, Bo
author_facet Lin, Jie
Chen, Hailiang
Wang, Bojun
Luo, Yudong
Tang, Wenshi
Huang, Bo
contents Post-common envelope binaries (PCEBs) consisting of a white dwarf (WD) plus a main-sequence (MS) star can constrain current prescriptions of common envelope evolution (CEE) and calibrate theoretical models of binary formation and evolution. Most PCEBs studied to date have typical orbital periods of hours to a few days and can be well explained by assuming inefficient CEE to expel the envelope. However, there are currently several systems with relatively wide orbital periods ($>$18 days). To explain these wide PCEBs, additional sources of energy have been suggested to be taken into account. Here, we present the discovery and observational characterization of a compact object ($M\,\geq\,0.58\,\rm M_{\odot}$) with a K-type star companion in the solar neighborhood ($d\sim 112$ pc) and an orbital period of $P_{\rm orb}\sim 14$ days. The compact object binary is likely to be a system consisting of a WD and a barium dwarf, making it the shortest-period barium star binary candidate. Such a system with an orbital period within the gap between tight and wide binaries provides a test of whether additional energy sources are required to explain its formation. Using binary evolution models, we investigate the evolutionary history of this wide PCEB system and find that the observed properties of this source can be explained without invoking any extra energy source.
format Preprint
id arxiv_https___arxiv_org_abs_2601_15619
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle A compact object with a K type star companion in the solar neighborhood: a wide post common envelope binary with a white dwarf candidate
Lin, Jie
Chen, Hailiang
Wang, Bojun
Luo, Yudong
Tang, Wenshi
Huang, Bo
Solar and Stellar Astrophysics
High Energy Astrophysical Phenomena
Post-common envelope binaries (PCEBs) consisting of a white dwarf (WD) plus a main-sequence (MS) star can constrain current prescriptions of common envelope evolution (CEE) and calibrate theoretical models of binary formation and evolution. Most PCEBs studied to date have typical orbital periods of hours to a few days and can be well explained by assuming inefficient CEE to expel the envelope. However, there are currently several systems with relatively wide orbital periods ($>$18 days). To explain these wide PCEBs, additional sources of energy have been suggested to be taken into account. Here, we present the discovery and observational characterization of a compact object ($M\,\geq\,0.58\,\rm M_{\odot}$) with a K-type star companion in the solar neighborhood ($d\sim 112$ pc) and an orbital period of $P_{\rm orb}\sim 14$ days. The compact object binary is likely to be a system consisting of a WD and a barium dwarf, making it the shortest-period barium star binary candidate. Such a system with an orbital period within the gap between tight and wide binaries provides a test of whether additional energy sources are required to explain its formation. Using binary evolution models, we investigate the evolutionary history of this wide PCEB system and find that the observed properties of this source can be explained without invoking any extra energy source.
title A compact object with a K type star companion in the solar neighborhood: a wide post common envelope binary with a white dwarf candidate
topic Solar and Stellar Astrophysics
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2601.15619