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Understanding the processes that drive galaxy formation and shape the observed properties of galaxies is one of the most interesting and challenging frontier problems of modern astrophysics. We now know that the evolution of galaxies is…

The observed super-massive black hole (SMBH) mass -- galaxy velocity dispersion ($M_{\rm bh} - \sigma$) correlation may be established when winds/outflows from the SMBH drive gas out of the potential wells of classical bulges. Here we…

Cosmology and Nongalactic Astrophysics · Physics 2015-05-14 Sergei Nayakshin , Chris Power

The empirical model of Lu et al. 2014a for the relation between star formation rate and halo mass growth is adopted to predict the classical bulge mass ($M_{\rm cb}$) - total stellar mass ($M_\star$) relation for central galaxies. The…

Astrophysics of Galaxies · Physics 2015-06-22 Zhankui Lu , H. J. Mo

An extraordinary recent development in astrophysics was the discovery of the fossil relationship between central black hole mass and the stellar mass of galactic bulges. The physical process underpinning this relationship has become known…

The shining of quasars is a likely trigger of massive galatic winds, able to remove most ISM from a star-forming spheroid. However, the mechanism responsible for the deposition of energy into the ISM is still unclear. Starting from a model…

Astrophysics · Physics 2014-10-13 P. Monaco , F. Fontanot

We present some results of the new MORGANA model for the rise of galaxies and active nuclei, and show that the improved physical motivation of the description of star formation and feedback allows to get hints on the physical processes at…

Astrophysics · Physics 2007-05-23 Pierluigi Monaco

Most common formation channels of stellar mass black hole (BH) binaries like the ones observed by LIGO, often assume they are assembled from the direct collapse of massive pre-supernova stars. However, it is still unclear whether the final…

High Energy Astrophysical Phenomena · Physics 2019-04-11 Aldo Batta , Enrico Ramirez-Ruiz

AGN feedback from supermassive black holes (SMBHs) at the center of early type galaxies is commonly invoked as the explanation for the quenching of star formation in these systems. The situation is complicated by the significant amount of…

Astrophysics of Galaxies · Physics 2015-11-04 L. Ciotti , J. P. Ostriker , A. Negri , S. Pellegrini , S. Posacki , G. Novak

We describe a physical model of the outflows produced as a result of gas accretion onto a black hole, and the resultant changes to star formation rates and efficiencies in galaxies, using the Radio-SAGE semi-analytic galaxy formation model.…

We present a relationship between the black hole mass, stellar mass, and star formation rate of a diverse group of 91 galaxies with dynamically-measured black hole masses. For our sample of galaxies with a variety of morphologies and other…

Astrophysics of Galaxies · Physics 2017-08-09 Bryan A. Terrazas , Eric F. Bell , Joanna Woo , Bruno M. B. Henriques

Feedback from accreting supermassive black holes (SMBHs) is thought to be a primary driver of quenching in massive galaxies, but the best way to implement SMBH physics into galaxy formation simulations remains ambiguous. As part of the…

In the universe's most massive galaxies, kinetic feedback from a central supermassive black hole appears to limit star formation. Abundant circumstantial evidence suggests that accumulation of cold gas near the central black hole strongly…

Astrophysics of Galaxies · Physics 2020-12-23 Deovrat Prasad , G. Mark Voit , Brian W. O'shea , Forrest Glines

Super-massive black holes, with masses larger than a million times that of the Sun, appear to inhabit the centers of all massive galaxies. Cosmologically-motivated theories of galaxy formation need feedback from these super-massive black…

Astrophysics of Galaxies · Physics 2018-01-04 Ignacio Martin-Navarro , Jean P. Brodie , Aaron J. Romanowsky , Tomas Ruiz-Lara , Glenn van de Ven

As computational resolution of modern cosmological simulations reach ever so close to resolving individual star-forming clumps in a galaxy, a need for "resolution-appropriate" physics for a galaxy-scale simulation has never been greater. To…

Astrophysics of Galaxies · Physics 2020-01-08 Ji-hoon Kim , John H. Wise , Tom Abel , Yongseok Jo , Joel R. Primack , Philip F. Hopkins

We introduce a new model for the formation and evolution of supermassive black holes (SMBHs) in the RAMSES code using sink particles, improving over previous work the treatment of gas accretion and dynamical evolution. This new model is…

Astrophysics of Galaxies · Physics 2017-04-11 Pawel Biernacki , Romain Teyssier , Andreas Bleuler

Black hole feedback has been widely implemented as the key recipe to quench star formation in massive galaxies in modern semi-analytic models and hydrodynamical simulations. As the theoretical details surrounding the accretion and feedback…

Feedback in massive galaxies generally involves quenching of star formation, a favored candidate being outflows from a central supermassive black hole. At high redshifts however, explanation of the huge rates of star formation often found…

Astrophysics of Galaxies · Physics 2016-01-27 Rebekka Bieri , Yohan Dubois , Joseph Silk , Gary A. Mamon

Negative feedback from accreting supermassive black holes is regarded as a key ingredient in suppressing star formation and quenching massive galaxies. However, several models and observations suggest that black hole feedback may have a…

We introduce massive black holes (BHs) in the Feedback In Realistic Environments project and perform high-resolution cosmological hydrodynamic simulations of quasar-mass halos ($M_{\rm halo}(z=2) \approx 10^{12.5}\,\rm{M}_{\odot}$) down to…

I argue that there are two modes of global star formation. Disks and smaller spheroids form stars relatively inefficiently as a consequence of supernova-triggered negative feedback via a sequence of ministarbursts (S mode), whereas massive…

Astrophysics · Physics 2009-11-13 Joseph Silk