Abstract
We present a new N-body and gas dynamics code, called Nyx, for large-scale cosmological simulations. Nyx follows the temporal evolution of a system of discrete dark matter particles gravitationally coupled to an inviscid ideal fluid in an expanding universe. The gas is advanced in an Eulerian framework with block-structured adaptive mesh refinement; a particle-mesh scheme using the same grid hierarchy is used to solve for self-gravity and advance the particles. Computational results demonstrating the validation of Nyx on standard cosmological test problems, and the scaling behavior of Nyx to 50,000 cores, are presented. © 2013. The American Astronomical Society. All rights reserved.
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Almgren, A. S., Bell, J. B., Lijewski, M. J., Lukić, Z., & Van Andel, E. (2013). Nyx: A massively parallel AMR code for computational cosmology. Astrophysical Journal, 765(1). https://doi.org/10.1088/0004-637X/765/1/39
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