Journal
PUBLICATIONS OF THE ASTRONOMICAL SOCIETY OF AUSTRALIA
Volume 27, Issue 4, Pages 449-456Publisher
CAMBRIDGE UNIV PRESS
DOI: 10.1071/AS09080
Keywords
galaxies: individual (NGC 5128); galaxies: kinematics and dynamics; galaxies: nuclei; galaxies: structure; techniques: spectroscopic
Categories
Funding
- DFG
- science organizing committee
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At less than 4 Mpc distance the radio galaxy NGC 5128 (Centaurus A) is the prime example to study the supermassive black hole and its influence on the environment in great detail. To model and understand the feeding and feedback mechanisms one needs an accurate determination of the mass of the supermassive black hole. The aim of this review is to give an overview of the recent studies that have been dedicated to measure the black hole mass in Centaurus A from both gas and stellar kinematics. It shows how the advancement in observing techniques and instrumentation drive the field of black hole mass measurements and concludes that adaptive optics assisted integral field spectroscopy is the key to identify the effects of the AGN on the surrounding ionised gas. Using data from SINFONI at the ESO Very Large Telescope, the best-fit black hole mass is M-BH = 4.5(+1.7, -1.0) x 10(7) M-circle dot (from H-2 kinematics) and M-BH =(5.5 +/- 3.0) x 10(7) M-circle dot (from stellar kinematics). This is one of the cleanest gas-versus-star comparisons of a M-BH determination, and brings Centaurus A into agreement with the MBH-sigma relation.
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