Area of research
Astronomy and Astrophysics · Instrumentation
Research interest
Research interests include Stellar, planetary, and galactic studies, Astronomy and Astrophysical Research, Galaxies: Formation, Evolution, Phenomena, and Astrophysics and Star Formation Studies.
The broken-exponential radial structure and larger size of the Milky Way galaxy
A Tale of Two Disks: Mapping the Milky Way with the Final Data Release of APOGEE
The integrated metallicity profile of the Milky Way
Continuous Gravitational Waves from Galactic Neutron Stars: Demography, Detectability, and Prospects
The Milky Way tomography with APOGEE: intrinsic density distribution and structure of mono-abundance populations
Quantifying radial migration in the Milky Way: inefficient over short time-scales but essential to the very outer disc beyond ∼15 kpc
A comparative analysis of the chemical compositions of Gaia-Enceladus/Sausage and Milky Way satellites using APOGEE
The MaNGA <scp>firefly</scp> Value-Added-Catalogue: resolved stellar populations of 10,010 nearby galaxies
How well do local relations predict gas-phase metallicity gradients? Results from SDSS-IV MaNGA
APOGEE Chemical Abundance Patterns of the Massive Milky Way Satellites
SDSS-IV MaNGA: drivers of stellar metallicity in nearby galaxies
Stellar population models based on the SDSS-IV MaStar library of stellar spectra – I. Intermediate-age/old models
How many components? Quantifying the complexity of the metallicity distribution in the Milky Way bulge with APOGEE
The age–chemical abundance structure of the Galactic disc – II. <i>α</i>-dichotomy and thick disc formation
The Milky Way’s bulge star formation history as constrained from its bimodal chemical abundance distribution
The weak imprint of environment on the stellar populations of galaxies
SDSS-IV MaNGA: the spatially resolved stellar initial mass function in ∼400 early-type galaxies
SDSS-IV MaNGA: Spatially resolved star formation histories in galaxies as a function of galaxy mass and type