Turbulence in the intragroup and circumgalactic medium
arXiv:2107.12125 · doi:10.1051/0004-6361/202140920
Abstract
In massive objects, such as galaxy clusters, the turbulent velocity dispersion, , is tightly correlated to both the object mass, , and the thermal energy. Here, we investigate whether these scaling laws extend to lower-mass objects in dark-matter filaments. We perform a cosmological zoom-in simulation of a filament using an adaptive filtering technique for the resolved velocity component and a subgrid-scale model to account for the unresolved component. We then compute the mean turbulent and thermal energies for all halos in the zoom-in region and compare different definitions of halo averages. Averaging constrained by density and temperature thresholds is favored over averages solely based on virial spheres. We find no clear trend for the turbulent velocity dispersion versus halo mass, but significant correlation and a scaling law with exponent between the turbulent velocity dispersion and thermal energy that agrees with a nearly constant turbulent Mach number, similar to more massive objects. We conclude that the self-similar energetics proposed for galaxy clusters extends down to the CGM of individual galaxies.
12 pages, 11 figures, submitted to Astronomy and Astrophysics
References in corpus (13)
- The Circumgalactic Medium
- Scaling Properties of a Complete X-ray Selected Galaxy Group Sample
- Self-similar energetics in large clusters of galaxies
- Energy transfer in compressible magnetohydrodynamic turbulence
- Stripped elliptical galaxies as probes of ICM physics: I. Tails, wakes, and flow patterns in and around stripped ellipticals
- Galaxy filaments as pearl necklaces
- Hydrodynamical adaptive mesh refinement simulations of turbulent flows - I. Substructure in a wind
- Understanding `galaxy groups' as a unique structure in the universe
- Extending the relation from clusters to groups-Impact of cool core nature, AGN feedback, and selection effects
- Viscosity, pressure, and support of the gas in simulations of merging cool-core clusters
- Comparative statistics of selected subgrid-scale models in large eddy simulations of decaying, supersonic MHD turbulence
- Deep Chandra Observations of HCG 16 - II. The Development of the Intra-group Medium in a Spiral-Rich Group
- Intermittent fragmentation and statistical variations during gas collapse in magnetised atomic cooling haloes