A simple way to improve AGN feedback prescription in SPH simulations
arXiv:1512.05712 · doi:10.1093/mnras/stv2971
Abstract
AGN feedback is an important ingredient in galaxy evolution, however its treatment in numerical simulations is necessarily approximate, requiring subgrid prescriptions due to the dynamical range involved in the calculations. We present a suite of SPH simulations designed to showcase the importance of the choice of a particular subgrid prescription for AGN feedback. We concentrate on two approaches to treating wide-angle AGN outflows: thermal feedback, where thermal and kinetic energy is injected into the gas surrounding the SMBH particle, and virtual particle feedback, where energy is carried by tracer particles radially away from the AGN. We show that the latter model produces a far more complex structure around the SMBH, which we argue is a more physically correct outcome. We suggest a simple improvement to the thermal feedback model - injecting the energy into a cone, rather than spherically symmetrically - and show that this markedly improves the agreement between the two prescriptions, without requiring any noticeable increase in the computational cost of the simulation.
16 pages, 13 figures; accepted for publication in MNRAS
References in corpus (13)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- Massive Molecular Outflows and Evidence for AGN Feedback from CO Observations
- A unified model for AGN feedback in cosmological simulations of structure formation
- An ultra-luminous quasar with a twelve-billion-solar-mass black hole at redshift 6.30
- Massive molecular outflows and negative feedback in ULIRGs observed by Herschel-PACS
- Stellar Feedback in Dwarf Galaxy Formation
- Black hole feedback in the luminous quasar PDS 456
- Energy- and momentum-conserving AGN feedback outflows
- The resolution bias: low resolution feedback simulations are better at destroying galaxies
- Black hole feedback in a multiphase interstellar medium
- Two-phase model for Black Hole feeding and feedback
- Collapse and fragmentation of molecular clouds under pressure
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