The variability plane of accreting compact objects

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 380:1 (2007) 301-310

Authors:

EG Körding, S Migliari, R Fender, T Belloni, C Knigge, I McHardy

The variable radio counterpart and possible large-scale jet of the new Z source XTE J1701−462

Monthly Notices of the Royal Astronomical Society: Letters Oxford University Press (OUP) 380:1 (2007) l25-l29

Authors:

RP Fender, M Dahlem, J Homan, S Corbel, R Sault, TM Belloni

Evidence for alignment of the rotation and velocity vectors in pulsars. II. Further data and emission heights

ArXiv 0708.4251 (2007)

Authors:

Simon Johnston, M Kramer, A Karastergiou, G Hobbs, S Ord, J Wallman

Abstract:

We have conducted observations of 22 pulsars at frequencies of 0.7, 1.4 and 3.1 GHz and present their polarization profiles. The observations were carried out for two main purposes. First we compare the orientation of the spin and velocity vectors to verify the proposed alignment of these vectors by Johnston et al. (2005). We find, for the 14 pulsars for which we were able to determine both vectors, that 7 are plausibly aligned, a fraction which is lower than, but consistent with, earlier measurements. Secondly, we use profiles obtained simultaneously at widely spaced frequencies to compute the radio emission heights. We find, similar to other workers in the field, that radiation from the centre of the profile originates from lower in the magnetosphere than the radiation from the outer parts of the profile.

A Highly Polarised Jet in XTE J1748-288

Sissa Medialab Srl (2007) 018

Authors:

Catherine Brocksopp, Rob Fender, James CA Miller-Jones, Ben Stappers

A link between radio loudness and X-ray/optical properties of AGN

PoSMQW 6 (2007) 026-026

Authors:

Sebastian Jester, Elmar Koerding, Rob Fender

Abstract:

We have found empirically that the radio loudness of AGN can be understood as function of both the X-ray and optical luminosity. This way of considering the radio loudness was inspired by the hardness-intensity diagrams for X-ray binaries, in which objects follow a definite track with changes to their radio properties occurring in certain regions. We generalize the hardness-intensity diagram to a "disk-fraction luminosity diagram", which can be used to classify the accretion states both of X-ray binaries and of AGN. Using a sample of nearly 5000 SDSS quasars with ROSAT matches, we show that an AGN is more likely to have a high radio:optical flux ratio when it has a high total luminosity or a large contribution from X-rays. Thus, it is necessary to take into account both the optical and the X-ray properties of quasars in order to understand their radio loudness. The success of categorizing quasars in the same way as X-ray binaries is further evidence for the unification of accretion onto stellar-mass and supermassive compact objects.