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John C. Forbes

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Papers (17)

  1. NSF-DOE Vera C. Rubin Observatory Observations of Interstellar Comet 3I/ATLAS (C/2025 N1) astro-ph.EP · 2025 · author #41
  2. Turning up the heat on `Oumuamua astro-ph.EP · 2019 · author #1
  3. Towards a radially-resolved semi-analytic model for the evolution of disc galaxies tuned with machine learning astro-ph.GA · 2018 · author #1
  4. Modeling the atomic-to-molecular transition in cosmological simulations of galaxy formation astro-ph.GA · 2018 · author #3
  5. On the existence of brown dwarfs more massive than the hydrogen burning limit astro-ph.SR · 2018 · author #1
  6. Habitable Evaporated Cores and the Occurrence of Panspermia near the Galactic Center astro-ph.EP · 2017 · author #2
  7. A Unified Model for Galactic Discs: Star Formation, Turbulence Driving, and Mass Transport astro-ph.GA · 2017 · author #3
  8. Evaporation of planetary atmospheres due to XUV illumination by quasars astro-ph.EP · 2017 · author #1
  9. Suppression of star formation in dwarf galaxies by grain photoelectric feedback astro-ph.GA · 2016 · author #1
  10. Mass Transport and Turbulence in Gravitationally Unstable Disk Galaxies II: The Effects of Star Formation Feedback astro-ph.GA · 2016 · author #3
  11. Stellar Mass--Gas-phase Metallicity Relation at $0.5\leq z\leq0.7$: A Power Law with Increasing Scatter toward the Low-mass Regime astro-ph.GA · 2016 · author #4
  12. Mass Transport and Turbulence in Gravitationally Unstable Disk Galaxies. I: The Case of Pure Self-Gravity astro-ph.GA · 2015 · author #3
  13. Curveballs in protoplanetary disks - the effect of the Magnus force on planet formation astro-ph.EP · 2015 · author #1
  14. Mixing and transport of metals by gravitational instability-driven turbulence in galactic discs astro-ph.GA · 2014 · author #4
  15. VADER: A Flexible, Robust, Open-Source Code for Simulating Viscous Thin Accretion Disks astro-ph.IM · 2014 · author #2
  16. On the origin of the fundamental metallicity relation and the scatter in galaxy scaling relations astro-ph.CO · 2013 · author #1
  17. Balance among gravitational instability, star formation, and accretion determines the structure and evolution of disk galaxies astro-ph.CO · 2013 · author #1

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