Photometric Classification of Stars Around the Milky Way's Central Black Hole: I. Central Parsec
arXiv:2406.04166 · doi:10.1051/0004-6361/202449881
Abstract
The presence of young massive stars in the Galactic Centre (GC) raises questions about star formation near the black hole Sagittarius A* (Sgr A*). Additionally, the initial mass function (IMF) in this region appears different from the standard Salpeter/Kroupa law. Extreme extinction and crowding limit our understanding of the stellar population, with spectroscopic data available only for selected bright sources. We aim to improve knowledge about the distribution and IMF of young, massive stars near Sgr A*. Using intermediate band (IB) photometry, we identify candidates for massive young stars through Bayesian inference, a neural network, and a gradient-boosted trees algorithm. We obtained spectral energy distributions for 6590 stars, 1181 of which have been previously classified spectroscopically. We identify 351 stars classified as early types by all three methods, including 155 newly identified candidates. The radial density profiles for late and early-type stars fit broken power laws, with a break radius of 9.2 +- 0.6'' for early-type stars. Late-type stars show a core-like distribution around Sgr A*, while early-type stars' density increases steeply towards the black hole. We infer a top-heavy IMF of young stars near Sgr A* (R < 9''), with a power-law of 1.6 +- 0.1. At greater distances, a standard Salpeter/Kroupa IMF fits the data. IB photometry also constrains the metallicities of late-type stars, estimating metallicities for over 600 stars. The IMF variation with radial distance suggests different star formation mechanisms, with a top-heavy IMF near Sgr A* consistent with disc star formation.
References in corpus (19)
- The Two Young Star Disks in the Central Parsec of the Galaxy: Properties, Dynamics and Formation
- An Update on Monitoring Stellar Orbits in the Galactic Center
- APOGEE Data and Spectral Analysis from SDSS Data Release 16: Seven Years of Observations Including First Results from APOGEE-South
- Improved GRAVITY astrometric accuracy from modeling of optical aberrations
- Star Formation Around Super-Massive Black Holes
- Large scale kinematics and dynamical modelling of the Milky Way nuclear star cluster
- Evidence for a Long-Standing Top-Heavy IMF in the Central Parsec of the Galaxy
- The Milky Way's nuclear star cluster: Old, metal-rich, and cuspy
- KMOS view of the Galactic Centre - II. Metallicity distribution of late-type stars
- New constraints on the structure of the nuclear stellar cluster of the Milky Way from star counts and MIR imaging
- The young stars in the Galactic Center
- Detailed Abundances for the Old Population near the Galactic Center: I. Metallicity distribution of the Nuclear Star Cluster
- SPISEA: A Python-Based Simple Stellar Population Synthesis Code for Star Clusters
- Detailed abundances in the Galactic center: Evidence of a metal-rich alpha-enhanced stellar population
- Spectroscopic Detection of a Cusp of Late-type Stars around the Central Black Hole in the Milky Way
- Asymmetric spatial distribution of sub-solar metallicity stars in the Milky Way nuclear star cluster
- Variability of the near-infrared extinction curve towards the Galactic centre
- A KMOS survey of the nuclear disk of the Milky Way I: Survey design and metallicities
- Stellar Populations in the Central 0.5 pc of Our Galaxy III: The Dynamical Sub-structures
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- A solution to the paradox of youth in the Galactic centre