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Autori principali: Vázquez, Carlos Viscasillas, Casali, Giada, Magrini, Laura, Cescutti, Gabriele, Cristallo, Sergio, Danielski, Camilla, Giribaldi, Riano, Kordopatis, Georges, Minchev, Ivan, Molero, Marta, Moya, Andrés, Palla, Marco, Tautvaišienė, Gražina, Vescovi, Diego
Natura: Preprint
Pubblicazione: 2025
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Accesso online:https://arxiv.org/abs/2512.13145
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author Vázquez, Carlos Viscasillas
Casali, Giada
Magrini, Laura
Cescutti, Gabriele
Cristallo, Sergio
Danielski, Camilla
Giribaldi, Riano
Kordopatis, Georges
Minchev, Ivan
Molero, Marta
Moya, Andrés
Palla, Marco
Tautvaišienė, Gražina
Vescovi, Diego
author_facet Vázquez, Carlos Viscasillas
Casali, Giada
Magrini, Laura
Cescutti, Gabriele
Cristallo, Sergio
Danielski, Camilla
Giribaldi, Riano
Kordopatis, Georges
Minchev, Ivan
Molero, Marta
Moya, Andrés
Palla, Marco
Tautvaišienė, Gražina
Vescovi, Diego
contents Chemical clocks, based on age-sensitive stellar abundance ratios, offer a powerful and scalable approach to reconstruct the formation history of the Milky Way. This white paper outlines how wide-field, high-resolution spectroscopy can transform chemical clocks into precise and broadly applicable stellar age estimators when combined with astrometry and asteroseismology. We summarize the current limitations, including calibration across Galactic environments and the impact of internal stellar evolution, and define the observational requirements needed to overcome them. The Wide-field Spectroscopic Telescope (WST), with its large field of view, high multiplex, and broad wavelength coverage at high spectral resolution, is uniquely suited to deliver the homogeneous datasets required to map the age structure of the Galaxy at unprecedented scale. Such a capability will enable decisive progress in Galactic archaeology and stellar evolution studies.
format Preprint
id arxiv_https___arxiv_org_abs_2512_13145
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Mapping the Ages of Stars with Chemistry
Vázquez, Carlos Viscasillas
Casali, Giada
Magrini, Laura
Cescutti, Gabriele
Cristallo, Sergio
Danielski, Camilla
Giribaldi, Riano
Kordopatis, Georges
Minchev, Ivan
Molero, Marta
Moya, Andrés
Palla, Marco
Tautvaišienė, Gražina
Vescovi, Diego
Astrophysics of Galaxies
Chemical clocks, based on age-sensitive stellar abundance ratios, offer a powerful and scalable approach to reconstruct the formation history of the Milky Way. This white paper outlines how wide-field, high-resolution spectroscopy can transform chemical clocks into precise and broadly applicable stellar age estimators when combined with astrometry and asteroseismology. We summarize the current limitations, including calibration across Galactic environments and the impact of internal stellar evolution, and define the observational requirements needed to overcome them. The Wide-field Spectroscopic Telescope (WST), with its large field of view, high multiplex, and broad wavelength coverage at high spectral resolution, is uniquely suited to deliver the homogeneous datasets required to map the age structure of the Galaxy at unprecedented scale. Such a capability will enable decisive progress in Galactic archaeology and stellar evolution studies.
title Mapping the Ages of Stars with Chemistry
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2512.13145