A Parameter Space Exploration of High Resolution Numerically Evolved Early Type Galaxies Including AGN Feedback and Accurate Dynamical Treatment of Stellar Orbits
arXiv:2201.03909 · doi:10.3847/1538-4357/ac70c7
Abstract
An extensive exploration of the model parameter space of axisymmetric Early-Type Galaxies (ETGs) hosting a central supermassive Black Hole (SMBH) is conducted by means of high resolution hydrodynamical simulations performed with our code MACER. Global properties such as 1) total SMBH accreted mass, 2) final X-ray luminosity and temperature of the X-ray emitting halos, 3) total amount of new stars formed from the cooling gas, 4) total ejected mass in form of supernovae and AGN feedback induced galactic winds, are obtained as a function of galaxy structure and internal dynamics. In addition to the galactic dark matter halo, the model galaxies are also embedded in a group/cluster dark matter halo; finally cosmological accretion is also included, with amount and time dependence derived from cosmological simulations. Angular momentum conservation leads to the formation of cold HI disks; these disks further evolve under the action of star formation induced by disk instabilities, of the associated mass discharge onto the central SMBH, and of the consequent AGN feedback. At the end of the simulations, the hot (metal enriched) gas mass is roughly the mass in the old stars, with twice as much having been ejected into the intergalactic medium. The cold gas disks are a kpc in size, and the metal rich new stars are in kpc disks. The masses of cold gas and new stars are roughly the mass of the old stars. Overall, the final systems appear to reproduce quite successfully the main global properties of real ETGs.
19 pages, 7 figures
References in corpus (18)
- Athena: A New Code for Astrophysical MHD
- The Athena++ Adaptive Mesh Refinement Framework: Design and Magnetohydrodynamic Solvers
- The Structure & Dynamics of Massive Early-type Galaxies: On Homology, Isothermality and Isotropy inside one Effective Radius
- Characterising the Gravitational Instability in Cooling Accretion Discs
- Chaotic cold accretion on to black holes in rotating atmospheres
- Small scatter and nearly-isothermal mass profiles to four half-light radii from two-dimensional stellar dynamics of early-type galaxies
- Hot Atmospheres, Cold Gas, AGN Feedback and the Evolution of Early Type Galaxies: a Topical Perspective
- The Effect of the AGN Feedback on the Interstellar Medium of Early-Type Galaxies: 2D Hydrodynamical Simulations of the Low-Rotation Case
- The MASSIVE survey - XI. What drives the molecular gas properties of early-type galaxies
- Systematic trends in total-mass profiles from dynamical models of early-type galaxies
- The effects of galaxy shape and rotation on the X-ray haloes of early-type galaxies - II. Numerical simulations
- Modeling for Stellar Feedback in Galaxy Formation Simulations
- Early-type galaxy density profiles from IllustrisTNG: II. Evolutionary trend of the total density profile
- Two-component Jaffe models with a central black hole. I: the spherical case
- Mass density slope of elliptical galaxies from strong lensing and resolved stellar kinematics
- Hot gaseous atmospheres of rotating galaxies observed with XMM-Newton
- Two-component galaxy models with a central BH -- II. The ellipsoidal case
- Jeans modeling of axisymmetric galaxies with multiple stellar populations