SPYGLASS. VII-A. The Demographics and Ages of Small Nearby Young Associations

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Main Authors: Kerr, Ronan, Paolino, Facundo Peŕez, Tan, Jonathan C., Speagle, Joshua S., Kraus, Adam L., Fernández-Trincado, José G., Stassun, Keivan G., Chanamé, Julio
Format: Preprint
Published: 2025
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author Kerr, Ronan
Paolino, Facundo Peŕez
Tan, Jonathan C.
Speagle, Joshua S.
Kraus, Adam L.
Fernández-Trincado, José G.
Stassun, Keivan G.
Chanamé, Julio
author_facet Kerr, Ronan
Paolino, Facundo Peŕez
Tan, Jonathan C.
Speagle, Joshua S.
Kraus, Adam L.
Fernández-Trincado, José G.
Stassun, Keivan G.
Chanamé, Julio
contents Recent Gaia-based young stellar association surveys have revealed dozens of low-mass populations that have, until recently, been too small or sparse to detect. These populations represent a largely unstudied demographic with unknown origins, and their relative isolation may minimize gravitational disruptions that impact traceback, making them compelling targets for dynamical studies. In this paper, we survey 15 of these isolated young associations for the first time: Andromeda South (SCYA-97), Aquila East, Aries South (SCYA-104), Cassiopeia East (SCYA-43), Canis Major North, Leo Central (SCYA-2), Leo East (SCYA-3), Theia 72, Ophiuchus Southeast, Scutum North (SCYA-70), Taurus-Orion 1 (TOR1), Theia 78, Vulpecula East (UPK 88), SCYA-54, and SCYA-79. By combining Gaia astrometry and photometry with new ground-based spectroscopic measurements, we assess the membership of each population, search for substructure, analyze their demographics, and compute ages. We find that the smallest populations in our sample contain $<20$ $M_{\odot}$ of stellar mass, making them the smallest associations ever detected. Four host substantial substructure, including TOR1, where we discover TOR1B, a new 16 $M_{\odot}$ association with radial velocities inconsistent with an origin in the parent complex. Using PARSEC isochrones, we produce self-consistent ages for all populations supported by dynamical and lithium depletion ages, which range from 6.9 $\pm$ 0.5 Myr in TOR1A to 42.8 $\pm$ 2.4 in AndS. Our results provide the first detailed overview of the properties of these populations, characterizing a largely unknown category of young associations that may have an important role in tracing the processes that guide local star formation.
format Preprint
id arxiv_https___arxiv_org_abs_2510_21936
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle SPYGLASS. VII-A. The Demographics and Ages of Small Nearby Young Associations
Kerr, Ronan
Paolino, Facundo Peŕez
Tan, Jonathan C.
Speagle, Joshua S.
Kraus, Adam L.
Fernández-Trincado, José G.
Stassun, Keivan G.
Chanamé, Julio
Solar and Stellar Astrophysics
Recent Gaia-based young stellar association surveys have revealed dozens of low-mass populations that have, until recently, been too small or sparse to detect. These populations represent a largely unstudied demographic with unknown origins, and their relative isolation may minimize gravitational disruptions that impact traceback, making them compelling targets for dynamical studies. In this paper, we survey 15 of these isolated young associations for the first time: Andromeda South (SCYA-97), Aquila East, Aries South (SCYA-104), Cassiopeia East (SCYA-43), Canis Major North, Leo Central (SCYA-2), Leo East (SCYA-3), Theia 72, Ophiuchus Southeast, Scutum North (SCYA-70), Taurus-Orion 1 (TOR1), Theia 78, Vulpecula East (UPK 88), SCYA-54, and SCYA-79. By combining Gaia astrometry and photometry with new ground-based spectroscopic measurements, we assess the membership of each population, search for substructure, analyze their demographics, and compute ages. We find that the smallest populations in our sample contain $<20$ $M_{\odot}$ of stellar mass, making them the smallest associations ever detected. Four host substantial substructure, including TOR1, where we discover TOR1B, a new 16 $M_{\odot}$ association with radial velocities inconsistent with an origin in the parent complex. Using PARSEC isochrones, we produce self-consistent ages for all populations supported by dynamical and lithium depletion ages, which range from 6.9 $\pm$ 0.5 Myr in TOR1A to 42.8 $\pm$ 2.4 in AndS. Our results provide the first detailed overview of the properties of these populations, characterizing a largely unknown category of young associations that may have an important role in tracing the processes that guide local star formation.
title SPYGLASS. VII-A. The Demographics and Ages of Small Nearby Young Associations
topic Solar and Stellar Astrophysics
url https://arxiv.org/abs/2510.21936