869 citations · 927 across the 3 of their papers we have counts for
5 papers
Enzo: An Adaptive Mesh Refinement Code for Astrophysics
The Enzo Collaboration, Greg L. Bryan, Michael L. Norman +26
This paper describes the open-source code Enzo, which uses block-structured adaptive mesh refinement to provide high spatial and temporal resolution for modeling astrophysical flui…
On The Road To More Realistic Galaxy Cluster Simulations: The Effects of Radiative Cooling and Thermal Feedback Prescriptions on the Observational Properties of Simulated Galaxy Clusters
Stephen Skory, Eric Hallman, Jack O. Burns +3
Flux limited X-ray surveys of galaxy clusters show that clusters come in two roughly equally proportioned varieties: "cool core" clusters (CCs) and non-"cool core" clusters (NCCs).…
Optimized Multi-Frequency Spectra for Applications in Radiative Feedback and Cosmological Reionization
Jordan Mirocha, Stephen Skory, Jack O. Burns +1
The recent implementation of radiative transfer algorithms in numerous hydrodynamics codes has led to a dramatic improvement in studies of feedback in various astrophysical environ…
A Multi-Code Analysis Toolkit for Astrophysical Simulation Data
Matthew J. Turk, Britton D. Smith, Jeffrey S. Oishi +4
The analysis of complex multiphysics astrophysical simulations presents a unique and rapidly growing set of challenges: reproducibility, parallelization, and vast increases in data…
Parallel HOP: A Scalable Halo Finder for Massive Cosmological Data Sets
Stephen Skory, Matthew J. Turk, Michael L. Norman +1
Modern N-body cosmological simulations contain billions () of dark matter particles. These simulations require hundreds to thousands of gigabytes of memory, and employ hundre…