The AGN fuelling/feedback cycle in nearby radio galaxies I. ALMA observations and early results

Monthly Notices of the Royal Astronomical Society Oxford University Press 484:3 (2019) 4239-4259

Authors:

I Ruffa, I Prandoni, R Laing, R Paladino, P Parma, H de Ruiter, A Mignano, TA Davis, Martin Bureau, J Warren

Abstract:

This is the first paper of a series exploring the multi-frequency properties of a sample of eleven nearby low excitation radio galaxies (LERGs) in the southern sky. We are conducting an extensive study of different galaxy components (stars, warm and cold gas, radio jets) with the aim of improving our understanding of the AGN fuelling/feedback cycle in LERGs. We present ALMA Band 6 12CO(2-1) and continuum observations of nine sources. Continuum emission from the radio cores was detected in all objects. Six sources also show mm emission from jets on kpc/sub-kpc scales. The jet structures are very similar at mm and cm wavelengths. We conclude that synchrotron emission associated with the radio jets dominates the continuum spectra up to 230 GHz. The 12CO(2-1) line was detected in emission in six out of nine objects, with molecular gas masses ranging from 2 × 107 to 2 × 1010 M⊙. The CO detections show disc-like structures on scales from ≈0.2 to ≈10 kpc. In one case (NGC 3100) the CO disc presents some asymmetries and is disrupted in the direction of the northern radio jet, indicating a possible jet/disc interaction. In IC 4296, CO is detected in absorption against the radio core as well as in emission. In four of the six galaxies with CO detections, the gas rotation axes are roughly parallel to the radio jets in projection; the remaining two cases show large misalignments. In those objects where optical imaging is available, dust and CO appear to be co-spatial.

The AGN fuelling/feedback cycle in nearby radio galaxies - I. ALMA observations and early results

(2019)

Authors:

Ilaria Ruffa, Isabella Prandoni, Robert A Laing, Rosita Paladino, Paola Parma, Hans de Ruiter, Arturo Mignano, Timothy A Davis, Martin Bureau, Joshua Warren

Tracking the variable jets of V404 Cygni during its 2015 outburst

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 482:3 (2019) 2950-2972

Authors:

AJ Tetarenko, GR Sivakoff, JCA Miller-Jones, M Bremer, KP Mooley, RP Fender, C Rumsey, A Bahramian, D Altamirano, S Heinz, D Maitra, SB Markoff, S Migliari, MP Rupen, DM Russell, TD Russell, CL Sarazin

Discovery and Follow-up of the Unusual Nuclear Transient OGLE17aaj

(2019)

Authors:

M Gromadzki, A Hamanowicz, L Wyrzykowski, KV Sokolovsky, M Fraser, Sz Kozlowski, J Guillochon, I Arcavi, B Trakhtenbrot, PG Jonker, S Mattila, A Udalski, MK Szymanski, I Soszynski, R Poleski, P Pietrukowicz, J Skowron, P Mroz, K Ulaczyk, M Pawlak, KA Rybicki, J Sollerman, F Taddia, Z Kostrzewa-Rutkowska, F Onori, DR Young, K Maguire, SJ Smartt, C Inserra, A Gal-Yam, A Rau, T-W Chen, CR Angus, DAH Buckley

The twisted jets of Circinus X-1

Monthly Notices of the Royal Astronomical Society Oxford University Press 484:2 (2019) 1672-1686

Authors:

M Coriat, Rp Fender, C Tasse, O Smirnov, Ak Tzioumis, Jw Broderick

Abstract:

We present the results of millimetre (33 and 35 GHz) and centimetre (2.1, 5.5, and 9.0 GHz) wavelength observations of the neutron star X-ray binary Circinus X-1, using the Australia Telescope Compact Array. We have used advanced calibration and de-convolution algorithms to overcome multiple issues due to intrinsic variability of the source and direction-dependent effects. The resulting centimetre and millimetre radio maps show spatially resolved jet structures from sub-arcsecond to arcminute angular scales. They represent the most detailed investigation to date of the interaction of the relativistic jet from the X-ray binary with the young supernova remnant in which it is embedded. Comparison of projected jet axes at different wavelengths indicates significant rotation of the jet axis with increasing angular scale. This either suggests interactions of the jet material with surrounding media, creating bends in the jet flow path, or jet precession. We explore the latter hypothesis by successfully modelling the observed jet path using a kinematic jet model. If precession is the right interpretation and our modelling is correct, the best-fitting parameters describe an accreting source with mildly relativistic ejecta (v = 0.5c), inclined close to the plane of the sky (i = 86 ◦ ) and precessing over a 5-yr period.