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Optical and X-ray Correlations During the 2015 Outburst of the Black Hole V404 Cyg

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arxiv 1905.00949 v1 pith:YHQY3DVO submitted 2019-05-02 astro-ph.HE

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keywords opticalx-raybrightnessoutburstrapidv404variabilitybinary
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We present a serendipitous multiwavelength campaign of optical photometry simultaneous with Integral X-ray monitoring of the 2015 outburst of the black hole V404 Cyg. Large amplitude optical variability is generally correlated with X-rays, with lags of order a minute or less compatible with binary light travel timescales or jet ejections. Rapid optical flaring on time-scales of seconds or less is incompatible with binary light-travel timescales and has instead been associated with synchrotron emission from a jet. Both this rapid jet response and the lagged and smeared one can be present simultaneously. The optical brightness is not uniquely determined by the X-ray brightness, but the X-ray/optical relationship is bounded by a lower-envelope such that at any given optical brightness there is a maximum X-ray brightness seen.} This lower-envelope traces out a Fopt proportional to Fx^0.54 relation which can be approximately extrapolated back to quiescence. Rapid optical variability is only seen near this envelope, and these periods correspond to the hardest hard X-ray colours. This correlation between hard X-ray colour and optical variability (and anti-correlation with optical brightness) is a novel finding of this campaign, and apparently a facet of the outburst behaviour in V404 Cyg. It is likely that these correlations are driven by changes in the central accretion rate and geometry.

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  1. A short observational view of black hole X-ray binaries with INTEGRAL

    astro-ph.HE 2019-08 unverdicted novelty 1.0 of 10

    This is an invited conference review arguing that INTEGRAL's high-energy coverage, long uninterrupted observations, and hard X-ray polarimetry have uniquely advanced studies of black hole X-ray binaries.

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