New Signatures of the Milky Way Formation in the Local Halo and Inner Halo Streamers in the Era of Gaia
Paola Re Fiorentin, Mario G. Lattanzi, Alessandro Spagna, and Anna, Curir

TL;DR
This paper uses Gaia-era data to identify and analyze stellar streams in the Milky Way's halo, revealing new substructures and comparing observations with simulations to understand galaxy formation.
Contribution
It introduces a method combining spectro-photometric data and proper motions to detect and characterize halo streams, identifying five new kinematic overdensities linked to galaxy formation history.
Findings
Detection of five discrete kinematic overdensities in the local halo.
Confirmation of the Helmi stream as a high-inclination prograde orbit structure.
Identification of three new retrograde stream groups.
Abstract
We explore the vicinity of the Milky Way through the use of spectro-photometric data from the Sloan Digital Sky Survey and high-quality proper motions derived from multi-epoch positions extracted from the Guide Star Catalogue II database. In order to identify and characterise streams as relics of the Milky Way formation, we start with classifying, select, and study subdwarfs with up to kpc away from the Sun as tracers of the local halo system. Then, through phase-space analysis, we find statistical evidence of five discrete kinematic overdensities among of the fastest-moving stars, and compare them to high-resolution N-body simulations of the interaction between a Milky-Way like galaxy and orbiting dwarf galaxies with four representative cases of merging histories. The observed overdensities can be interpreted as fossil substructures consisting of…
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Taxonomy
TopicsAstronomy and Astrophysical Research · Stellar, planetary, and galactic studies · Astro and Planetary Science
