The chemical fingerprint of the Gaia BH3 system. Evidence for early cluster enrichment from the analysis of 51 elements

Fuente: arXiv
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Autori principali: Broeck, Gregory Vanden, Merle, Thibault, Mai, Nhat Tan, Van Eck, Sophie, Goriely, Stephane, Siess, Lionel, Jorissen, Alain, Hoai, Do Thi
Natura: Preprint
Pubblicazione: 2026
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author Broeck, Gregory Vanden
Merle, Thibault
Mai, Nhat Tan
Van Eck, Sophie
Goriely, Stephane
Siess, Lionel
Jorissen, Alain
Hoai, Do Thi
author_facet Broeck, Gregory Vanden
Merle, Thibault
Mai, Nhat Tan
Van Eck, Sophie
Goriely, Stephane
Siess, Lionel
Jorissen, Alain
Hoai, Do Thi
contents The Gaia BH3 system hosts the most massive known stellar-origin black hole and a low-mass metal-poor companion whose chemical composition may constrain early explosive nucleosynthesis processes. We investigate the chemical abundances of the companion in order to constrain the formation of this remarkable system. We perform a detailed analysis of high-resolution ESO-UVES spectra of the companion. 51 elements from lithium to uranium were investigated through spectral synthesis, including 15 treated in NLTE. We compare the resulting pattern to r-process enriched stars, to nucleosynthesis models and to stars of the ED-2 stream. The abundance pattern of the BH3 companion is consistent with that of r-I stars and is well reproduced by a combination of core-collapse supernova yields and an r-process component. The chemical patterns of four ED-2 stars closely match that of the companion especially when a dilution is taken into account. The present analysis provides the most detailed chemical characterisation of a metal-poor star associated with a stellar-mass black hole. The chemical similarity with ED-2 stars argue against local pollution across the binary system. The abundances instead reflect early spatially inhomogeneous enrichment of the progenitor cluster.
format Preprint
id arxiv_https___arxiv_org_abs_2605_02353
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle The chemical fingerprint of the Gaia BH3 system. Evidence for early cluster enrichment from the analysis of 51 elements
Broeck, Gregory Vanden
Merle, Thibault
Mai, Nhat Tan
Van Eck, Sophie
Goriely, Stephane
Siess, Lionel
Jorissen, Alain
Hoai, Do Thi
Solar and Stellar Astrophysics
Astrophysics of Galaxies
The Gaia BH3 system hosts the most massive known stellar-origin black hole and a low-mass metal-poor companion whose chemical composition may constrain early explosive nucleosynthesis processes. We investigate the chemical abundances of the companion in order to constrain the formation of this remarkable system. We perform a detailed analysis of high-resolution ESO-UVES spectra of the companion. 51 elements from lithium to uranium were investigated through spectral synthesis, including 15 treated in NLTE. We compare the resulting pattern to r-process enriched stars, to nucleosynthesis models and to stars of the ED-2 stream. The abundance pattern of the BH3 companion is consistent with that of r-I stars and is well reproduced by a combination of core-collapse supernova yields and an r-process component. The chemical patterns of four ED-2 stars closely match that of the companion especially when a dilution is taken into account. The present analysis provides the most detailed chemical characterisation of a metal-poor star associated with a stellar-mass black hole. The chemical similarity with ED-2 stars argue against local pollution across the binary system. The abundances instead reflect early spatially inhomogeneous enrichment of the progenitor cluster.
title The chemical fingerprint of the Gaia BH3 system. Evidence for early cluster enrichment from the analysis of 51 elements
topic Solar and Stellar Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2605.02353