Shock finding on a moving-mesh: I. Shock statistics in non-radiative cosmological simulations
arXiv:1407.4117 · doi:10.1093/mnras/stu2386
Abstract
Cosmological shock waves play an important role in hierarchical structure formation by dissipating and thermalizing kinetic energy of gas flows, thereby heating the universe. Furthermore, identifying shocks in hydrodynamical simulations and measuring their Mach number accurately is critical for calculating the production of non-thermal particle components through diffusive shock acceleration. However, shocks are often significantly broadened in numerical simulations, making it challenging to implement an accurate shock finder. We here introduce a refined methodology for detecting shocks in the moving-mesh code AREPO, and show that results for shock statistics can be sensitive to implementation details. We put special emphasis on filtering against spurious shock detections due to tangential discontinuities and contacts. Both of them are omnipresent in cosmological simulations, for example in the form of shear-induced Kelvin-Helmholtz instabilities and cold fronts. As an initial application of our new implementation, we analyse shock statistics in non-radiative cosmological simulations of dark matter and baryons. We find that the bulk of energy dissipation at redshift zero occurs in shocks with Mach numbers around . Furthermore, almost of the thermalization is contributed by shocks in the warm hot intergalactic medium (WHIM), whereas occurs in clusters, groups and smaller halos. Compared to previous studies, these findings revise the characterization of the most important shocks towards higher Mach numbers and lower density structures. Our results also suggest that regions with densities above and below should be roughly equally important for the energetics of cosmic ray acceleration through large-scale structure shocks.
16 pages, 13 figures, published in MNRAS, January 2015
References in corpus (21)
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Properties of galaxies reproduced by a hydrodynamic simulation
- Introducing the Illustris Project: the evolution of galaxy populations across cosmic time
- Detection of the Characteristic Pion-Decay Signature in Supernova Remnants
- Shocks and cold fronts in galaxy clusters
- Particle Acceleration on Megaparsec Scales in a Merging Galaxy Cluster
- The origin of cold fronts in the cores of relaxed galaxy clusters
- Detecting shock waves in cosmological smoothed particle hydrodynamics simulations
- Cosmic ray feedback in hydrodynamical simulations of galaxy formation
- Shock Waves in Eulerian Cosmological Simulations: Main Properties and Acceleration of Cosmic Rays
- Non linear particle acceleration at non-relativistic shock waves in the presence of self-generated turbulence
- Cosmological Shocks in Adaptive Mesh Refinement Simulations and the Acceleration of Cosmic Rays
- Simulating cosmic rays in clusters of galaxies - I. Effects on the Sunyaev-Zel'dovich effect and the X-ray emission
- Cosmological Shock Waves in the Large Scale Structure of the Universe: Non-gravitational Effects
- Double relics in Abell 2345 and Abell 1240: spectral index and polarization analysis
- Nonlinear Diffusive Shock Acceleration with Magnetic Field Amplification
- Diffuse radio emission from clusters in the MareNostrum Universe simulation
- Self-Similar Evolution of Cosmic-Ray-Modified Quasi-Parallel Plane Shocks
- Shock Waves and Cosmic Ray Acceleration in the Outskirts of Galaxy Clusters
- Cosmic ray acceleration at perpendicular shocks in supernova remnants
- A critical Mach number for electron injection in collisionless shocks
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