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The formation of our Milky Way can be parsed qualitatively into different phases that resulted in its structurally different stellar populations: the halo and the disk components.
Yi, S. K. et al. Toward Better Age Estimates for Stellar Populations: The Y 2
2001
Earlier work this paper cites.
Demarque, P., Woo, J.-H., Kim, Y.-C. & Yi, S. K. Y 2
2004
Earlier work this paper cites.
Skrutskie, M. F. et al. The Two Micron All Sky Survey (2MASS). Astron. J. 131
2006
Earlier work this paper cites.
Schönrich, R. & Binney, J. Chemical evolution with radial mixing. Mon. Not. R. Astron. Soc. 396
2009
Earlier work this paper cites.
Forbes, D. A. & Bridges, T. Accreted versus in situ Milky Way globular clusters. Mon. Not. R. Astron. Soc. 404
2010
Earlier work this paper cites.
Cui, X.-Q. et al. The Large Sky Area Multi-Object Fiber Spectroscopic Telescope (LAMOST). Research in Astronomy and Astrophysics. 12
2012
Earlier work this paper cites.
Zhao, G., Zhao, Y.-H., Chu, Y.-Q., Jing, Y.-P. & Deng, L.-C. LAMOST spectral survey – An overview. Research in Astronomy and Astrophysics. 12
2012
Earlier work this paper cites.
Haywood, M., Di Matteo, P., Lehnert, M. D., Katz, D. & Gómez, A. The age structure of stellar populations in the solar vicinity. Clues of a two-phase formation history of the Milky Way disk. Astron. Astrophys. 560
2013
Earlier work this paper cites.
VandenBerg, D. A., Brogaard, K., Leaman, R. & Casagrande, L. The Ages of 55 Globular Clusters as Determined Using an Improved Δ \Delta VĤB_TO Method along with Color-Magnitude Diagram Constraints, and Their Implications for Broader Issues. Astrophys. J. 775
2013
Earlier work this paper cites.
Xiang, M.-S. et al. The evolution of stellar metallicity gradients of the Milky Way disk from LSS-GAC main sequence turn-off stars: a two-phase disk formation history? Research in Astronomy and Astrophysics. 15
2015
Earlier work this paper cites.
Hayden, M. R. et al. Chemical Cartography with APOGEE: Metallicity Distribution Functions and the Chemical Structure of the Milky Way Disk. Astrophys. J. 808
2015
Earlier work this paper cites.
Bovy, J. galpy: A python Library for Galactic Dynamics. Astrophys. J. Suppl. Ser. 216
2015
Earlier work this paper cites.
Huang, Y. et al. Determination of the local standard of rest using the LSS-GAC DR1. Mon. Not. R. Astron. Soc. 449
2015
Earlier work this paper cites.
Bland-Hawthorn, J. & Gerhard, O. The Galaxy in Context: Structural, Kinematic, and Integrated Properties. Annu. Rev. Astron. Astrophys. 54
2016
Earlier work this paper cites.
Gaia Collaboration. The Gaia mission. Astron. Astrophys. 595
2016
Earlier work this paper cites.
Planck Collaboration. Planck 2015 results. XIII. Cosmological parameters. Astron. Astrophys. 594
2016
Earlier work this paper cites.
Dotter, A. MESA Isochrones and Stellar Tracks (MIST) 0: Methods for the Construction of Stellar Isochrones. Astrophys. J. Suppl. Ser. 222
2016
Cited alongside, same era.
Choi, J., Dotter, A., Conroy, C., Cantiello, M., Paxton, B. & Johnson, B. D. Mesa Isochrones and Stellar Tracks (MIST). I. Solar-scaled Models. Astrophys. J. 823
2016
Cited alongside, same era.
Xiang, M. et al. The Ages and Masses of a Million Galactic-disk Main-sequence Turnoff and Subgiant Stars from the LAMOST Galactic Spectroscopic Surveys. Astrophys. J. Suppl. Ser. 232
2017
Cited alongside, same era.
Dotter, A., Conroy, C., Cargile, P. & Asplund, M. The Influence of Atomic Diffusion on Stellar Ages and Chemical Tagging. Astrophys. J. 840
2017
Cited alongside, same era.
Silva Aguirre, V. et al. Standing on the Shoulders of Dwarfs: the Kepler Asteroseismic LEGACY Sample. II. Radii, Masses, and Ages. Astrophys. J. 835
Di Matteo, P. et al. The Milky Way has no in-situ halo other than the heated thick disc. Composition of the stellar halo and age-dating the last significant merger with Gaia DR2 and APOGEE. Astron. Astrophys. 632
2019
Later among the works it cites.
Xiang, M. et al. Abundance Estimates for 16 Elements in 6 Million Stars from LAMOST DR5 Low-Resolution Spectra. Astrophys. J. Suppl. Ser. 245
2019
Later among the works it cites.
Gravity Collaboration. A geometric distance measurement to the Galactic center black hole with 0.3% uncertainty. Astron. Astrophys. 625
2019
Later among the works it cites.
Helmi, A. Streams, Substructures, and the Early History of the Milky Way. Annu. Rev. Astron. Astrophys. 58
2020
Later among the works it cites.
Bonaca, A. et al. Timing the Early Assembly of the Milky Way with the H3 Survey. Astrophys. J. 897
2020
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2017
Cited alongside, same era.
Bonaca, A., Conroy, C., Wetzel, A., Hopkins, P. F. & Kereš, D. Gaia Reveals a Metal-rich, in situ Component of the Local Stellar Halo. Astrophys. J. 845
2017
Cited alongside, same era.
Frankel, N., Rix, H.-W., Ting, Y.-S., Ness, M. & Hogg, D. W. Measuring Radial Orbit Migration in the Galactic Disk. Astrophys. J. 865
2018
Cited alongside, same era.
Belokurov, V., Erkal, D., Evans, N. W., Koposov, S. E. & Deason, A. J. Co-formation of the disc and the stellar halo. Mon. Not. R. Astron. Soc. 478
2018
Cited alongside, same era.
Helmi, A., Babusiaux, C., Koppelman, H. H., Massari, D., Veljanoski, J. & Brown, A. G. A. The merger that led to the formation of the Milky Way’s inner stellar halo and thick disk. Nature. 563
2018
Cited alongside, same era.
Feuillet, D. K. et al. Age-resolved chemistry of red giants in the solar neighbourhood. Mon. Not. R. Astron. Soc. 477
2018
Cited alongside, same era.
Koppelman, H., Helmi, A. & Veljanoski, J. One Large Blob and Many Streams Frosting the nearby Stellar Halo in Gaia DR2. Astrophys. J. 860
2018
Cited alongside, same era.
Xiang, M. et al. Stellar Mass Distribution and Star Formation History of the Galactic Disk Revealed by Mono-age Stellar Populations from LAMOST. Astrophys. J. Suppl. Ser. 237
2018
Cited alongside, same era.
Later among the works it cites.
Frankel, N., Sanders, J., Ting, Y.-S. & Rix, H.-W. Keeping It Cool: Much Orbit Migration, yet Little Heating, in the Galactic Disk. Astrophys. J. 896
2020
Later among the works it cites.
Nissen, P. E., Christensen-Dalsgaard, J., Mosumgaard, J. R., Silva Aguirre, V., Spitoni, E. & Verma, K. High-precision abundances of elements in solar-type stars. Evidence of two distinct sequences in abundance-age relations. Astron. Astrophys. 640
2020
Later among the works it cites.
Belokurov, V. et al. The biggest splash. Mon. Not. R. Astron. Soc. 494
2020
Later among the works it cites.
Wu, Y.-Q. et al. Age-metallicity dependent stellar kinematics of the Milky Way disc from LAMOST and Gaia. Mon. Not. R. Astron. Soc. 501
2021
Later among the works it cites.
Gaia Collaboration. The Influence of Atomic Diffusion on Stellar Ages and Chemical Tagging. Astron. Astrophys. 649
2021
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Montalbán, J. et al. Chronologically dating the early assembly of the Milky Way. Nature Astronomy. 5
2021
Later among the works it cites.
Xiang, M. et al. Data-driven Spectroscopic Estimates of Absolute Magnitude, Distance, and Binarity: Method and Catalog of 16,002 O- and B-type Stars from LAMOST. Astrophys. J. Suppl. Ser. 253
2021
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2021
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Cohen, R. E., Bellini, A., Casagrande, L., Brown, T. M., Correnti, M. & Kalirai, J. S. Relative Ages of Nine Inner Milky Way Globular Clusters from Proper Motion Cleaned Color-Magnitude Diagrams. Astron. J. 162
2021
Later among the works it cites.
Wang, S. et al. From large-scale environment to CGM angular momentum to star-forming activities - I. Star-forming galaxies. Mon. Not. R. Astron. Soc. 509
2022
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