The PGPUC horizontal branch evolutionary tracks

Fuente: arXiv
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Main Authors: Valcarce, A. A. R., Catelan, M., Alves, S., Gonzalez-Bordon, F.
Format: Preprint
Published: 2025
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author Valcarce, A. A. R.
Catelan, M.
Alves, S.
Gonzalez-Bordon, F.
author_facet Valcarce, A. A. R.
Catelan, M.
Alves, S.
Gonzalez-Bordon, F.
contents The horizontal branch (HB) phase of stellar evolution plays a critical role in understanding the life cycle of stars, particularly in the context of low-mass stars. However, generating theoretical evolutionary tracks for HB stars is computationally intensive, especially when attempting to match a wide range of observational data. This work presents an extensive grid of HB evolutionary tracks computed using the PGPUC code, covering a broad range of chemical compositions, progenitor masses, and alpha-element distributions. The aim is to provide a robust tool for interpreting HB stellar populations and advancing our understanding of their diverse properties. The evolutionary tracks are made publicly available through the PGPUC Online database for easy access and interpolation. We computed over 19,000 HB evolutionary tracks encompassing a wide range in terms of mass, metallicity, helium abundance, and alpha-element enhancement, along with different progenitor masses. Using these tracks, we calculated zero-age, middle-age, and terminal-age loci. The PGPUC database now includes a fine grid of HB evolutionary tracks, allowing for precise interpolation. Key findings include the dependence of HB morphology on progenitor mass, metallicity, and helium abundance.
format Preprint
id arxiv_https___arxiv_org_abs_2506_16562
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The PGPUC horizontal branch evolutionary tracks
Valcarce, A. A. R.
Catelan, M.
Alves, S.
Gonzalez-Bordon, F.
Solar and Stellar Astrophysics
Astrophysics of Galaxies
The horizontal branch (HB) phase of stellar evolution plays a critical role in understanding the life cycle of stars, particularly in the context of low-mass stars. However, generating theoretical evolutionary tracks for HB stars is computationally intensive, especially when attempting to match a wide range of observational data. This work presents an extensive grid of HB evolutionary tracks computed using the PGPUC code, covering a broad range of chemical compositions, progenitor masses, and alpha-element distributions. The aim is to provide a robust tool for interpreting HB stellar populations and advancing our understanding of their diverse properties. The evolutionary tracks are made publicly available through the PGPUC Online database for easy access and interpolation. We computed over 19,000 HB evolutionary tracks encompassing a wide range in terms of mass, metallicity, helium abundance, and alpha-element enhancement, along with different progenitor masses. Using these tracks, we calculated zero-age, middle-age, and terminal-age loci. The PGPUC database now includes a fine grid of HB evolutionary tracks, allowing for precise interpolation. Key findings include the dependence of HB morphology on progenitor mass, metallicity, and helium abundance.
title The PGPUC horizontal branch evolutionary tracks
topic Solar and Stellar Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2506.16562