Please use this identifier to cite or link to this item: http://hdl.handle.net/2248/8611
Title: Stellar substructures in the galactic disc and halo: properties, origins, and evolution
Authors: Deepak
Keywords: Surveys
Galaxy: stellar content
Galaxy:evolution
Galaxy:formation
Galaxy:kinematics and dynamics
Thin and thick disc
Issue Date: Dec-2024
Publisher: Springer Nature
Citation: Journal of Astrophysics and Astronomy, Vol. 45, No. 2, 25
Abstract: Spatial, kinematic, and orbital properties, along with ages and chemical compositions of the thin disc, thick disc, and various stellar substructures in the halo, are studied based on data from the LAMOST and Gaia surveys. The star formation in the Galactic thin and thick disc, with peak metallicities of ‑ 0.20 and ‑ 0.45 dex, is found to have peaked about 5.5 and 12.5 Gyr ago, respectively. The thin disc is also found to have experienced an initial star formation burst about 12.5 Gyr ago. The pro-grade population Splash and hot-disc (HD), with peak metallicity of about ‑ 0.60 and ‑ 0.43, are found to be about 13.03 and 12.21 Gyr old, respectively, with peak eccentricity of 0.70 and 0.35, are understood to be of in situ origin. The Gaia-Enceladus/Sausage (GE/S), Thamnos and Sequoia, with peak metallicity of about ‑ 1.31, ‑ 1.36, and ‑ 1.56, are found to be about 11.66, 12.89, and 12.18 Gyr, respectively, and are understood to be remnants of dwarf galaxies merged with the Milky Way. The HD, Splash, and Thamnos have experienced chemical evolution similar to the thick disc, while GE/S, Sequoia, and Helmi stream have experienced distinct chemical enrichment of iron and α-process elements.
Description: Restricted Access
The original publication is available at springerlink.com
URI: http://hdl.handle.net/2248/8611
ISSN: 0973-7758
Appears in Collections:IIAP Publications

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