Supporting paper for the science theme "The Hot and Energetic Universe" to be implemented by the Athena+ X-ray observatory (http://www.the-athena-x-ray-observatory.eu). 9 pages, 8 figuresMost of the action in Active Galactic Nuclei (AGN) occurs within a few tens of gravitational radii from the supermassive black hole, where matter in the accretion disk may lose up to almost half of its energy with a copious production of X-rays, emitted via Comptonization of the disk photons by hot electrons in a corona and partly reflected by the accretion disk. Thanks to its large effective area and excellent energy resolution, Athena+ contributions in the understanding of the physics of accretion in AGN will be fundamental - and unique - in many respects...
White dwarfs, neutron stars and stellar mass black holes are key laboratories to study matter in mos...
Understanding the astrophysics of feedback in active galactic nuclei (AGN) is key to understanding t...
This White Paper, submitted to the recent ESA call for science themes to define its future large mis...
Supporting paper for the science theme "The Hot and Energetic Universe" to be implemented by the Ath...
White dwarfs, neutron stars and stellar mass black holes are key laboratories to study matter in mos...
Understanding the astrophysics of feedback in active galactic nuclei (AGN) is key to understanding t...
This White Paper, submitted to the recent ESA call for science themes to define its future large mis...
Supporting paper for the science theme "The Hot and Energetic Universe" to be implemented by the Ath...
White dwarfs, neutron stars and stellar mass black holes are key laboratories to study matter in mos...
Understanding the astrophysics of feedback in active galactic nuclei (AGN) is key to understanding t...
This White Paper, submitted to the recent ESA call for science themes to define its future large mis...