19 citations · 29 across the 2 of their papers we have counts for
6 papers
Pre-supernova feedback mechanisms drive the destruction of molecular clouds in nearby star-forming disc galaxies
Mélanie Chevance, J. M. Diederik Kruijssen, Mark R. Krumholz +28
It is a major open question which physical processes stop the accretion of gas onto giant molecular clouds (GMCs) and limit the efficiency at which gas is converted into stars with…
Measuring the mixing scale of the ISM within nearby spiral galaxies
Kathryn Kreckel, I-Ting Ho, Guillermo A. Blanc +28
The spatial distribution of metals reflects, and can be used to constrain, the processes of chemical enrichment and mixing. Using PHANGS-MUSE optical integral field spectroscopy, w…
Multiple populations in globular clusters: Unified efforts from stellar evolution and chemical evolution models
Sohee Jang, Jenny J. Kim, Young-Wook Lee
Recent stellar evolution models for globular clusters (GCs) in multiple population paradigm suggest that horizontal-branch (HB) morphology and mean period of type ab RR Lyrae varia…
The Globular Cluster Origin of the Milky Way Outer Bulge: Evidence from Sodium Bimodality
Young-Wook Lee, Jenny J. Kim, Christian I. Johnson +4
Recent investigations of the double red clump in the color-magnitude diagram of the Milky Way bulge cast serious doubts on the structure and formation origin of the outer bulge. Un…
Explaining the multiple populations in globular clusters by multiple episodes of star formation and enrichment without gas expulsion from massive star feedback
Jenny J. Kim, Young-Wook Lee
In order to investigate the origin of multiple stellar populations found in globular clusters (GCs) in the halo and bulge of the Milky Way, we have constructed chemical evolution m…
Assembling the Milky Way bulge from globular clusters: Evidence from the double red clump
Young-Wook Lee, Seungsoo Hong, Dongwook Lim +4
The two red clumps (RCs) observed in the color-magnitude diagram of the Milky Way bulge is widely accepted as evidence for an X-shaped structure originated from the bar instability…