The growth of supermassive black holes, especially the associated state of active galactic nuclei (AGNs), is generally believed to be the key step in regulating star formation in massive galaxies. As the fuel of star formation, the cold gas reservoir is a direct probe of the effect of AGN feedback on their host galaxies. However, in observations, no clear connection has been found between AGN activity and the cold gas mass. In this paper, we find observational signals of the significant depletion of the total neutral hydrogen gas reservoir in optically selected Type 2 AGN-host central galaxies of stellar mass 109-1010 M ⊙. The effect of AGN feedback on the cold gas reservoir is stronger for higher star formation rates and higher AGN luminos...
We analyse the role of AGN feedback in quenching star formation for massive, central galaxies in the...
The observed massive end of the galaxy stellar mass function is steeper than its predicted dark matt...
Similarly to the cosmic star formation history, the black hole accretion rate density of the Univers...
We investigate the influence of active galactic nucleus (AGN) feedback on the galaxy cold gas conten...
Energy feedback, either from active galactic nuclei (AGNs) or from supernovae, is required to unders...
International audienceThe observed massive end of the galaxy stellar mass function is steeper than i...
Negative feedback from active galactic nuclei (AGN) is the leading mechanism for the quenching of ma...
International audienceSupermassive black holes (BH) are powerful sources of energy that are already ...
International audienceThe observed massive end of the galaxy stellar mass function is steeper than i...
Similarly to the cosmic star formation history, the black hole accretion rate density of the Univers...
International audienceSupermassive black holes (BH) are powerful sources of energy that are already ...
International audienceSupermassive black holes (BH) are powerful sources of energy that are already ...
The observed massive end of the galaxy stellar mass function is steeper than its predicted dark matt...
The observed massive end of the galaxy stellar mass function is steeper than its predicted dark matt...
We exploit a sample of 80 000 Sloan Digital Sky Survey central galaxies to investigate the effect of...
We analyse the role of AGN feedback in quenching star formation for massive, central galaxies in the...
The observed massive end of the galaxy stellar mass function is steeper than its predicted dark matt...
Similarly to the cosmic star formation history, the black hole accretion rate density of the Univers...
We investigate the influence of active galactic nucleus (AGN) feedback on the galaxy cold gas conten...
Energy feedback, either from active galactic nuclei (AGNs) or from supernovae, is required to unders...
International audienceThe observed massive end of the galaxy stellar mass function is steeper than i...
Negative feedback from active galactic nuclei (AGN) is the leading mechanism for the quenching of ma...
International audienceSupermassive black holes (BH) are powerful sources of energy that are already ...
International audienceThe observed massive end of the galaxy stellar mass function is steeper than i...
Similarly to the cosmic star formation history, the black hole accretion rate density of the Univers...
International audienceSupermassive black holes (BH) are powerful sources of energy that are already ...
International audienceSupermassive black holes (BH) are powerful sources of energy that are already ...
The observed massive end of the galaxy stellar mass function is steeper than its predicted dark matt...
The observed massive end of the galaxy stellar mass function is steeper than its predicted dark matt...
We exploit a sample of 80 000 Sloan Digital Sky Survey central galaxies to investigate the effect of...
We analyse the role of AGN feedback in quenching star formation for massive, central galaxies in the...
The observed massive end of the galaxy stellar mass function is steeper than its predicted dark matt...
Similarly to the cosmic star formation history, the black hole accretion rate density of the Univers...