Jet spectral breaks in black hole X-ray binaries
D. M. Russell, S. Markoff, P. Casella, A. G. Cantrell, R. Chatterjee,, R. P. Fender, E. Gallo, P. Gandhi, J. Homan, D. Maitra, J. C. A., Miller-Jones, K. O'Brien, T. Shahbaz

TL;DR
This study compiles multiwavelength data from black hole X-ray binaries to detect and analyze jet spectral breaks, significantly increasing the number of known jet break frequencies and exploring their relation to luminosity.
Contribution
It reports the first direct detection of a jet break in V404 Cyg and increases the sample size of BHXBs with measured jet breaks from three to eight, revealing diverse break frequencies.
Findings
Jet breaks detected at frequencies from 4.5 x 10^12 Hz to >4.7 x 10^14 Hz.
No clear global relation between jet break frequency and luminosity.
Large scatter in jet break frequencies at similar luminosities.
Abstract
In X-ray binaries, compact jets are known to commonly radiate at radio to infrared frequencies, whereas at optical to gamma-ray energies, the contribution of the jet is debated. The total luminosity, and hence power of the jet is critically dependent on the position of the break in its spectrum, between optically thick (self-absorbed) and optically thin synchrotron emission. This break, or turnover, has been reported in just one black hole X-ray binary (BHXB) thus far, GX 339-4, and inferred via spectral fitting in two others, A0620-00 and Cyg X-1. Here, we collect a wealth of multiwavelength data from the outbursts of BHXBs during hard X-ray states, in order to search for jet breaks as yet unidentified in their spectral energy distributions. In particular, we report the direct detection of the jet break in the spectrum of V404 Cyg during its 1989 outburst, at nu_b = (1.8 +- 0.3) x…
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