We have performed axisymmetric hydrodynamic simulations of an isolated L* elliptical galaxy including accretion by the central black hole, star formation, and feedback due to both processes. The effects of the central black hole on the temperature and momentum of galactic gas resulting from both radiative and mechanical feedback (in the form of a broad-line wind) are treated carefully using a detailed and physically well-motivated prescription. The simulations cover a range of length scales from 1 pc to 100 kpc, ensuring that gas that leaves the simulation via the inner edge and accretes onto the black hole has thermal energy less than its kinetic energy (that is, the Bondi radius is resolved even for the hot gas in the system). We carefull...
© 2016 The Authors. The inefficiency of star formation in massive elliptical galaxies is widely beli...
© 2016 The Authors. The inefficiency of star formation in massive elliptical galaxies is widely beli...
© 2020 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Societ...
We have performed axisymmetric hydrodynamic simulations of an isolated L* elliptical galaxy includin...
To facilitate the study of black hole fueling, star formation, and feedback in galaxies, we outline ...
none3siTo facilitate the study of black hole fuelling, star formation and feedback in galaxies, we o...
Based on two-dimensional high-resolution hydrodynamic numerical simulation, we study the mechanical ...
Based on two-dimensional high-resolution hydrodynamic numerical simulation, we study the mechanical ...
Based on two-dimensional high-resolution hydrodynamic numerical simulation, we study the mechanical ...
The importance of feedback (radiative and mechanical) from massive black holes at the centers of ell...
The importance of feedback (radiative and mechanical) from massive black holes at the centers of ell...
The importance of feedback (radiative and mechanical) from massive black holes at the centers of ell...
We investigate two modes of coupling the feedback energy from a central active galactic nucleus (AGN...
The inefficiency of star formation in massive elliptical galaxies is widely believed to be caused by...
International audienceWe explore the effect of momentum-driven winds representing radiation-pressure...
© 2016 The Authors. The inefficiency of star formation in massive elliptical galaxies is widely beli...
© 2016 The Authors. The inefficiency of star formation in massive elliptical galaxies is widely beli...
© 2020 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Societ...
We have performed axisymmetric hydrodynamic simulations of an isolated L* elliptical galaxy includin...
To facilitate the study of black hole fueling, star formation, and feedback in galaxies, we outline ...
none3siTo facilitate the study of black hole fuelling, star formation and feedback in galaxies, we o...
Based on two-dimensional high-resolution hydrodynamic numerical simulation, we study the mechanical ...
Based on two-dimensional high-resolution hydrodynamic numerical simulation, we study the mechanical ...
Based on two-dimensional high-resolution hydrodynamic numerical simulation, we study the mechanical ...
The importance of feedback (radiative and mechanical) from massive black holes at the centers of ell...
The importance of feedback (radiative and mechanical) from massive black holes at the centers of ell...
The importance of feedback (radiative and mechanical) from massive black holes at the centers of ell...
We investigate two modes of coupling the feedback energy from a central active galactic nucleus (AGN...
The inefficiency of star formation in massive elliptical galaxies is widely believed to be caused by...
International audienceWe explore the effect of momentum-driven winds representing radiation-pressure...
© 2016 The Authors. The inefficiency of star formation in massive elliptical galaxies is widely beli...
© 2016 The Authors. The inefficiency of star formation in massive elliptical galaxies is widely beli...
© 2020 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Societ...