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From the 2 of 17 linked papers with an AI index.

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17 papers

astro-ph.GA2026

Evaluating the flexibility of the MillenniumTNG galaxy formation model with multi-zoom re-simulations

Francisco Maion, Raul E. Angulo, Volker Springel +2

The authors develop a multi-zoom simulation suite based on the MillenniumTNG run to test how star‑formation and AGN feedback parameters affect the galaxy stellar‑mass function and…

astro-ph.GA2026

Illuminating M82: Simulating X-ray Emission from Galactic Winds in a Starburst Galaxy

Allison Lin, Lachlan Lancaster, Viraj Pandya +6

We generate mock X-ray observations from a suite of idealized high-resolution ( pc), tall-box ( kpc) simulations of star formation driven gala…

astro-ph.GA2026

The Origin of Da Scaling: Suppressed Cooling in Fast-Cooling Mixing Layers

Lachlan Lancaster, Drummond B. Fielding, Rajsekhar Mohapatra +1

In numerical experiments simulating Turbulent Radiative Mixing Layers (TRMLs) it is observed that as the cooling time in the mixed gas, , becomes very short compared…

astro-ph.GA2026

Ceci n'est pas une Couche de Mélange: The Meaning of Resolved Turbulent Radiative Mixing

Lachlan Lancaster, Rajsekhar Mohapatra, Drummond B. Fielding +1

Turbulent Radiative Mixing Layers (TRMLs) are of fundamental importance to the transport of energy and momentum in multi-phase, astrophysical fluids. We use measurements of the "mi…

astro-ph.GA2026

ArkenstoneBH. A model for high-specific energy black hole feedback in cosmological simulations

James M. Sullivan, Greg L. Bryan, Matthew C. Smith +6

AGN feedback is a key piece of galaxy evolution but is difficult to model due to its high specific energies, multiphase nature, and limited simulation resolutions. Arkenstone is a…

astro-ph.GA2026

Resolving the Unresolved Galactic Winds in Multi-phase Models. I. Methodology and Application

Xinfeng Xu, Drummond Fielding, Timothy Heckman +12

Galactic winds shape galaxy evolution; however, the outflowing gas is complex: it consists of multiple ionization phases, and its properties vary spatially. Therefore, methods that…