The relation between the diffuse X-ray luminosity and the radio power of the central AGN in galaxy groups

Monthly Notices of the Royal Astronomical Society Royal Astronomical Society 497:2 (2020) 2163-2174

Authors:

T Pasini, M Brueggen, F de Gasperin, L Birzan, E O'Sullivan, A Finoguenov, Imogen Whittam, Ian Heywood, Matt Jarvis, M Gitti, F Brighenti, Jd Collier, G Gozaliasl

Abstract:

Our understanding of how active galactic nucleus feedback operates in galaxy clusters has improved in recent years owing to large efforts in multiwavelength observations and hydrodynamical simulations. However, it is much less clear how feedback operates in galaxy groups, which have shallower gravitational potentials. In this work, using very deep Very Large Array and new MeerKAT observations from the MIGHTEE survey, we compiled a sample of 247 X-ray selected galaxy groups detected in the COSMOS field. We have studied the relation between the X-ray emission of the intra-group medium and the 1.4 GHz radio emission of the central radio galaxy. For comparison, we have also built a control sample of 142 galaxy clusters using ROSAT and NVSS data. We find that clusters and groups follow the same correlation between X-ray and radio emission. Large radio galaxies hosted in the centres of groups and merging clusters increase the scatter of the distribution. Using statistical tests and Monte Carlo simulations, we show that the correlation is not dominated by biases or selection effects. We also find that galaxy groups are more likely than clusters to host large radio galaxies, perhaps owing to the lower ambient gas density or a more efficient accretion mode. In these groups, radiative cooling of the intra-cluster medium could be less suppressed by active galactic nucleus heating. We conclude that the feedback processes that operate in galaxy clusters are also effective in groups.

International Coordination of Multi-Messenger Transient Observations in the 2020s and Beyond: Kavli-IAU White Paper

(2020)

Authors:

S Bradley Cenko, Patricia A Whitelock, Laura Cadonati, Valerie Connaughton, Roger Davies, Rob Fender, Paul J Groot, Mansi M Kasliwal, Tara Murphy, Samaya Nissanke, Alberto Sesana, Shigeru Yoshida, Binbin Zhang

Revealing the intermediate-mass black hole at the heart of the dwarf galaxy NGC 404 with sub-parsec resolution ALMA observations

(2020)

Authors:

Timothy A Davis, Dieu D Nguyen, Anil C Seth, Jenny E Greene, Kristina Nyland, Aaron J Barth, Martin Bureau, Michele Cappellari, Mark den Brok, Satoru Iguchi, Federico Lelli, Lijie Liu, Nadine Neumayer, Eve V North, Kyoko Onishi, Marc Sarzi, Mark D Smith, Thomas G Williams

TDCOSMO

Astronomy & Astrophysics EDP Sciences 639 (2020) a101

Authors:

M Millon, A Galan, F Courbin, T Treu, SH Suyu, X Ding, S Birrer, GC-F Chen, AJ Shajib, D Sluse, KC Wong, A Agnello, MW Auger, EJ Buckley-Geer, JHH Chan, T Collett, CD Fassnacht, S Hilbert, LVE Koopmans, V Motta, S Mukherjee, CE Rusu, A Sonnenfeld, C Spiniello, L Van de Vyvere

TDCOSMO. I. An exploration of systematic uncertainties in the inference of H$_0$ from time-delay cosmography

åp 639 (2020) A101-A101

Authors:

M Millon, A Galan, F Courbin, T Treu, SH Suyu, X Ding, S Birrer, GC-F Chen, AJ Shajib, D Sluse, KC Wong, A Agnello, MW Auger, EJ Buckley-Geer, JHH Chan, T Collett, CD Fassnacht, S Hilbert, LVE Koopmans, V Motta, S Mukherjee, CE Rusu, A Sonnenfeld, C Spiniello, L Van de Vyvere