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AMReX-Astrophysics Microphysics: A set of microphysics routines for astrophysical simulation codes based on the AMReX library

Authors: AMReX-Astro Microphysics Team and Khanak Bhargava and Abigail Bishop and Zhi Chen and Doreen Fan and Carl Fields and Adam M. Jacobs and Eric T. Johnson and Max P. Katz and Mark Krumholz and Chris Malone and Andy Nonaka and Piyush Sharda and Alexander Smith Clark and Frank Timmes and Ben Wibking and Don E. Willcox and Michael ZingalePublished: 2026-08-06Paper ID: 2608.06466Category: astro-ph.IMLicense: CC BY 4.0

Abstract

The AMReX-Astrophysics Microphysics library provides a common set of microphysics routines (reaction networks and associated physics, equations of state, and various transport coefficients) as well as solvers (stiff ODE integrators, nonlinear system solvers) for astrophysical simulation codes built around the AMReX adaptive mesh refinement library (W. Zhang et al., 2019). Several multi-dimensional simulation codes, including the compressible hydrodynamics code Castro (Almgren et al., 2010), the low-Mach number hydrodynamics code MAESTROeX (Fan et al., 2019), and the radiation-hydrodynamics code Quokka (Wibking & Krumholz, 2022) use Microphysics to provide the physics and solvers needed to close the hydrodynamics systems that they evolve. The library is implemented in C++ with GPU-offloading a key design feature.

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