most citedA variational encoder-decoder approach to precise spectroscopic age estimation for large Galactic surveys

37 citations · 108 across the 6 of their papers we have counts for

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astro-ph.GA202331 cited

The evolution of the Milky Way's thin disc radial metallicity gradient with K2 asteroseismic ages

Emma Willett, Andrea Miglio, J. Ted Mackereth +8

The radial metallicity distribution of the Milky Way's disc is an important observational constraint for models of the formation and evolution of our Galaxy. It informs our underst…

astro-ph.GA2023

Disentangling Stellar Age Estimates from Galactic Chemodynamical Evolution

Jeff Shen, Joshua S. Speagle, J. Ted Mackereth +2

Stellar ages are key for determining the formation history of the Milky Way, but are difficult to measure precisely. Furthermore, methods that use chemical abundances to infer ages…

astro-ph.GA202337 cited

A variational encoder-decoder approach to precise spectroscopic age estimation for large Galactic surveys

Henry W. Leung, Jo Bovy, J. Ted Mackereth +1

Constraints on the formation and evolution of the Milky Way Galaxy require multi-dimensional measurements of kinematics, abundances, and ages for a large population of stars. Ages…

astro-ph.GA202113 cited

Predicting the water content of interstellar objects from galactic star formation histories

Chris Lintott, Michele T. Bannister, J. Ted Mackereth

Planetesimals inevitably bear the signatures of their natal environment, preserving in their composition a record of the metallicity of their system's original gas and dust, albeit…

astro-ph.GA202111 cited

APOGEE Detection of N-rich stars in the tidal tails of Palomar 5

Sian G. Phillips, Ricardo P. Schiavon, J. Ted Mackereth +15

Recent results from chemical tagging studies using APOGEE data suggest a strong link between the chemical abundance patterns of stars found within globular clusters, and chemically…