Calibration of the [C/N] and [Y/Mg] chemical clocks with asteroseismic ages from the TESS space mission

Fuente: arXiv
Guardado en:
Detalles Bibliográficos
Autores principales: Pakštienė, E., Tautvaišienė, G., Bagdonas, V., Kjeldsen, H., Winther, M. L., Drazdauskas, A., Vázquez, C. Viscasillas, Chorniy, Y., Mikolaitis, Š., Minkevičiūtė, R., Stonkutė, E.
Formato: Preprint
Publicado: 2026
Materias:
Acceso en línea:
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
_version_ 1866910129375412224
author Pakštienė, E.
Tautvaišienė, G.
Bagdonas, V.
Kjeldsen, H.
Winther, M. L.
Drazdauskas, A.
Vázquez, C. Viscasillas
Chorniy, Y.
Mikolaitis, Š.
Minkevičiūtė, R.
Stonkutė, E.
author_facet Pakštienė, E.
Tautvaišienė, G.
Bagdonas, V.
Kjeldsen, H.
Winther, M. L.
Drazdauskas, A.
Vázquez, C. Viscasillas
Chorniy, Y.
Mikolaitis, Š.
Minkevičiūtė, R.
Stonkutė, E.
contents Context. Stellar ages are typically very difficult to estimate for field stars. New empirical methods, based on abundance ratios of chemical elements, are emerging and need to be calibrated. Aims. Our main aim is to contribute to revealing relations between [C/N] and [Y/Mg] ratios and stellar ages by determining astroseismic ages and non-local thermodynamic equilibrium (NLTE) abundances, and accounting for stellar evolutionary stages and birth places in the Galaxy. Methods. We searched for solar pulsations in a sample of 1250 bright F, G, and K giants using data from the TESS space telescope and determined asteroseismic ages using the BASTA and PARAM codes. For the [Y/Mg] relations with age, we determined abundances accounting for deviations from the local thermodynamic equilibrium. For the [C/N] relations with age, we separated stars according to their evolutionary stages. Results. We determined asteroseismic ages for 218 giants and derived [Y/Mg] and [C/N] relations with age for subsamples of stars in three regions of the Galactic thin disc and the thick disc. Conclusions. The [Y/Mg]-age relation exhibits a clear radial dependence across the Galactic disc, with a steeper trend in the outer disc, progressively flatter relations towards the inner disc, and a very flat trend in the thick disc. NLTE abundances of Mg and especially of Y have to be used in order to obtain a more precise stellar age evaluation from [Y/Mg] ratios. When using [C/N] abundance ratios as stellar age indicators, evolutionary stages of stars have to be taken into account.
format Preprint
id arxiv_https___arxiv_org_abs_2602_21413
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Calibration of the [C/N] and [Y/Mg] chemical clocks with asteroseismic ages from the TESS space mission
Pakštienė, E.
Tautvaišienė, G.
Bagdonas, V.
Kjeldsen, H.
Winther, M. L.
Drazdauskas, A.
Vázquez, C. Viscasillas
Chorniy, Y.
Mikolaitis, Š.
Minkevičiūtė, R.
Stonkutė, E.
Solar and Stellar Astrophysics
Context. Stellar ages are typically very difficult to estimate for field stars. New empirical methods, based on abundance ratios of chemical elements, are emerging and need to be calibrated. Aims. Our main aim is to contribute to revealing relations between [C/N] and [Y/Mg] ratios and stellar ages by determining astroseismic ages and non-local thermodynamic equilibrium (NLTE) abundances, and accounting for stellar evolutionary stages and birth places in the Galaxy. Methods. We searched for solar pulsations in a sample of 1250 bright F, G, and K giants using data from the TESS space telescope and determined asteroseismic ages using the BASTA and PARAM codes. For the [Y/Mg] relations with age, we determined abundances accounting for deviations from the local thermodynamic equilibrium. For the [C/N] relations with age, we separated stars according to their evolutionary stages. Results. We determined asteroseismic ages for 218 giants and derived [Y/Mg] and [C/N] relations with age for subsamples of stars in three regions of the Galactic thin disc and the thick disc. Conclusions. The [Y/Mg]-age relation exhibits a clear radial dependence across the Galactic disc, with a steeper trend in the outer disc, progressively flatter relations towards the inner disc, and a very flat trend in the thick disc. NLTE abundances of Mg and especially of Y have to be used in order to obtain a more precise stellar age evaluation from [Y/Mg] ratios. When using [C/N] abundance ratios as stellar age indicators, evolutionary stages of stars have to be taken into account.
title Calibration of the [C/N] and [Y/Mg] chemical clocks with asteroseismic ages from the TESS space mission
topic Solar and Stellar Astrophysics
url https://arxiv.org/abs/2602.21413