131 citations · 794 across the 18 of their papers we have counts for
7 papers · 1 filter
Where to find over-massive brown dwarfs: new benchmark systems for binary evolution
Dorsa Majidi, John C. Forbes, Abraham Loeb
Under the right conditions brown dwarfs that gain enough mass late in their lives to cross the hydrogen burning limit will not turn into low-mass stars, but rather remain essential…
A Solar System formation analogue in the Ophiuchus star-forming complex
John C. Forbes, João Alves, Douglas N. C. Lin
Anomalies among the daughter nuclei of the extinct short-lived radionuclides (SLRs) in the calcium-aluminum-rich inclusions (CAIs) indicate that the Solar System must have been bor…
Touching the Stars: Using High-Resolution 3D Printing to Visualize Stellar Nurseries
Nia Imara, John C. Forbes, James C. Weaver
Owing to their intricate variable density architecture, and as a principal site of star formation, molecular clouds represent one of the most functionally significant, yet least un…
Characterizing mass, momentum, energy and metal outflow rates of multi-phase galactic winds in the FIRE-2 cosmological simulations
Viraj Pandya, Drummond B. Fielding, Daniel Anglés-Alcázar +14
We characterize mass, momentum, energy and metal outflow rates of multi-phase galactic winds in a suite of FIRE-2 cosmological "zoom-in" simulations from the Feedback in Realistic…
The physics of gas phase metallicity gradients in galaxies
Piyush Sharda, Mark R. Krumholz, Emily Wisnioski +3
We present a new model for the evolution of gas phase metallicity gradients in galaxies from first principles. We show that metallicity gradients depend on four ratios that collect…
On the origin of the mass-metallicity gradient relation in the local Universe
Piyush Sharda, Mark R. Krumholz, Emily Wisnioski +3
In addition to the well-known gas phase mass-metallicity relation (MZR), recent spatially-resolved observations have shown that local galaxies also obey a mass-metallicity gradient…