The disc-jet coupling in the neutron star X-ray binary Aquila X-1
V. Tudose (1,2,3), R.P. Fender (4,2), M. Linares (2), D. Maitra (2),, M. van der Klis (2) ((1) ASTRON, (2) Amsterdam, (3) Bucharest, (4), Southampton)

TL;DR
This study investigates the disc-jet coupling in the neutron star X-ray binary Aquila X-1 using multi-wavelength archival data, revealing similarities to black hole systems and a potential radio/X-ray correlation.
Contribution
It provides the first evidence of disc-jet coupling in Aquila X-1 and compares its behavior to black hole X-ray binaries, including a potential radio/X-ray correlation.
Findings
Disc/jet coupling in Aquila X-1 resembles black hole X-ray binaries.
A possible radio/X-ray correlation with slope ~0.40.
Radio flux drops at high X-ray flux, indicating jet suppression.
Abstract
We study the accretion/ejection processes (i.e. disc/jet coupling) in the neutron star X-ray binary Aquila X-1 via a multi-wavelength approach. We use in the radio band the publicly available VLA archive containing observations of the object between 1986-2005, in the X-ray band the archival RXTE data (PCA and HEXTE) between 1997-2008, and in optical (R band) observations with the SMARTS recorded between 1998-2007. In the combined data set we find three outbursts for which quasi-simultaneous radio, optical (R band) and X-ray data exist and focus on them to some extent. We provide evidence that the disc/jet coupling in Aquila X-1 is similar to what has been observed in black hole X-ray binaries, at least from the point of view of the behaviour in the hardness-intensity diagrams (the hysteresis effect included), when the phenomenology of the jet is taken into account. Although based on a…
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