An underlying clock in the extreme flip-flop state transitions of the black hole transient Swift J1658.2-4242
David Bogensberger (1), Gabriele Ponti (2, 1), Chichuan Jin (3),, Tomaso M. Belloni (2), Haiwu Pan (3), Kirpal Nandra (1), Thomas D. Russell, (4), James C. A. Miller-Jones (5), Teo Mu\~noz-Darias (6, 7), Pavan Vynatheya, (8)

TL;DR
This study analyzes extreme flip-flop X-ray flux variations in the black hole binary Swift J1658.2-4242, revealing a potential underlying clock and novel spectral and timing behaviors during state transitions.
Contribution
It uncovers the presence of a fundamental period governing flip-flop transitions and details their spectral and timing characteristics, advancing understanding of accretion processes in black hole systems.
Findings
Flip-flops exhibit flux changes up to 77% within ~100s.
Transitions between QPO types C and A occur during flip-flops.
Flip-flops are linked to changes in the accretion disk temperature.
Abstract
Aims: Flip-flops are top-hat-like X-ray flux variations which occur in some transient accreting black hole binary systems and feature simultaneous changes in the spectral hardness and the Power Density Spectrum (PDS). They occur at a crucial time in the evolution of these systems, when the accretion disk emission starts to dominate over coronal emission. Flip-flops have only rarely been observed and are poorly understood. Methods: We detect 15 flip-flops in the 2018 outburst of Swift J1658.2-4242, in observations by XMM-Newton, NuSTAR, Astrosat, Swift, Insight-HXMT, INTEGRAL, and ATCA. We analyse their light curves, search for periodicities, compute their PDS, and fit their X-ray spectra, to investigate the source behaviour during flip-flop transitions, and how the interval featuring flip-flops differs from the rest of the outburst. Results: The flip-flops of Swift J1658.2-4242 are…
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