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April 10, 2026The Open Journal of Astrophysics0 citationsOpen Access

Statistical Predictions of the Accreted Stellar Halos around Milky Way-Like Galaxies

JMJ. Sebastian MonzonFBFrank C. Van den BoschMRMartin P. Rey

Key Points

  • This research aims to understand how accreted stellar halos form and evolve around Milky Way-like galaxies.
  • Developed semi-analytic modeling within the SatGen framework
  • Tracked ex-situ stellar components across large merger tree ensembles
  • Utilized Random Forest Regression to analyze observable galaxy properties
  • Accreted stellar halos are primarily built by just a few progenitors
  • Mass of accreted halos varies significantly based on the most massive satellite's fate
  • Central and accreted stellar mass correlate strongly with early galactic assembly
  • Observable properties effectively predict halo assembly histories

Abstract

In the Λ CDM paradigm, stellar halos form through the accretion and disruption of satellite galaxies. We introduce new semi-analytic modeling within the SatGen framework to track the ex-situ stellar components of Milky Way–like galaxies across large ensembles of merger trees, enabling a statistical study of the stochastic nature of galaxy assembly. We find that accreted stellar halos are typically built by only a few progenitors and are highly sensitive to the fate of the most massive satellite, producing order-of-magnitude variations in accreted stellar halo mass even at fixed host halo mass. Different stellar components trace distinct phases of host halo growth: central and accreted stellar mass correlate most strongly with early assembly, while surviving satellites trace more recent accretion. Finally, using Random Forest Regression, we quantify how well observable galaxy properties can recover halo assembly histories, providing a framework for interpreting upcoming low-surface-brightness observations of stellar halos.

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Cite This Study

Monzon et al. (2026) studied this question.

synapsesocial.com/papers/69d896166c1944d70ce07598https://doi.org/10.33232/001c.160221
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