Exploring the ex-situ components within Gaia DR3

Author:

Li Zhuohan12ORCID,Zhao Gang12ORCID,Zhang Ruizhi12ORCID,Xue Xiang-Xiang13ORCID,Chen Yuqin12ORCID,Amarante João A S45ORCID

Affiliation:

1. CAS Key Laboratory of Optical Astronomy, National Astronomical Observatories, Chinese Academy of Sciences , 100101 Beijing , PR China

2. School of Astronomy and Space Science, University of Chinese Academy of Sciences , 100049 Beijing , PR China

3. Institute for Frontiers in Astronomy and Astrophysics, Beijing Normal University , 102206 Beijing , PR China

4. Institut de Ciencies del Cosmos (ICCUB), Universitat de Barcelona (IEEC-UB) , Martí i Franquès 1, E-08028 Barcelona , Spain

5. Jeremiah Horrocks Institute, University of Central Lancashire , Preston, PR1 2HE , UK

Abstract

ABSTRACT The presence of Gaia DR3 provides a large sample of stars with complete 6D information, offering a fertile ground for the exploration of stellar objects that were accreted to the Milky Way through ancient merger events. In this study, we developed a deep learning methodology to identify ex-situ stars within the Gaia DR3 catalogue. After two phases of training, our neural network (NN) model was capable of performing binary classification of stars based on input data consisting of 3D position and velocity, as well as actions. From the target sample of 27 085 748 stars, our NN model managed to identify 160 146 ex-situ stars. The metallicity distribution suggests that this ex-situ sample comprises multiple components but appears to be predominated by the Gaia-Sausage-Enceladus (GSE). We identified member stars of the Magellanic Clouds, Sagittarius, and 20 globular clusters throughout our examination. Furthermore, an extensive group of member stars from GSE, Thamnos, Sequoia, Helmi streams, Wukong, and Pontus were meticulously selected, constituting an ideal sample for the comprehensive study of substructures. Finally, we conducted a preliminary estimation to determine the proportions of ex-situ stars in the thin disc, thick disc, and halo, which resulted in percentages of 0.1 per cent, 1.6 per cent, and 63.2 per cent, respectively. As the vertical height from the Galactic disc and distance from the Galactic centre increased, there was a corresponding upward trend in the ex-situ fraction of the target sample.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

CAS

European Research Council

European Union

European Space Agency

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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