Universal Behavior of X-ray Flares from Black Hole Systems

X-ray flares have been discovered in black hole systems, such as gamma-ray bursts, the tidal disruption event Swift J1644+57, the supermassive black hole Sagittarius A\(^*\) at the center of our Galaxy, and some active galactic nuclei. Their occurrences are always companied by relativistic jets. How...

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Veröffentlicht in:arXiv.org 2014-11
Hauptverfasser: Wang, F Y, Dai, Z G, Yi, S X, Xi, S Q
Format: Artikel
Sprache:eng
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Zusammenfassung:X-ray flares have been discovered in black hole systems, such as gamma-ray bursts, the tidal disruption event Swift J1644+57, the supermassive black hole Sagittarius A\(^*\) at the center of our Galaxy, and some active galactic nuclei. Their occurrences are always companied by relativistic jets. However, it is still unknown whether there is a physical analogy among such X-ray flares produced in black hole systems spanning nine orders of magnitude in mass. Here we report the observed data of X-ray flares, and show that they have three statistical properties similar to solar flares, including power-law distributions of energies, durations, and waiting times, which both can be explained by a fractal-diffusive self-organized criticality model. These statistical similarities, together with the fact that solar flares are triggered by a magnetic reconnection process, suggest that all of the X-ray flares are consistent with magnetic reconnection events, implying that their concomitant relativistic jets may be magnetically dominated.
ISSN:2331-8422
DOI:10.48550/arxiv.1411.4209