Magnetic Reconnection as a Potential Driver of X-ray Variability in Active Galactic Nuclei
Abstract
We present a systematic analysis on the X-ray variability in 13 bright quasars at z > 4.5, combining recent Swift observations from 2021 to 2023 and archival multi-epoch observations. Upper limits of the luminosity measurements were included in the analysis by using the Kaplan-Meier estimator method. It is found that the high-z quasars exhibit X-ray variability on both short-term (hours-to-days) and intermediate-term (weeks-to-months) timescales, with short-term variability dominating the overall variation. A linear correlation exists between the global mean () and standard deviation () of X-ray luminosities, which is independent of the X-ray photon index and optical-to-X-ray spectral slope. The localized stochastic magnetic reconnection mechanism is strongly favored, which can naturally lead to a scale-invariant power-law energy distribution and satisfactorily explain the correlation. The - correlation parallels with the well-documented rms-flux relation of low-z active galactic nuclei (AGNs), implying the magnetic reconnection mechanism could drive short-timescale X-ray variability in both high- and low-z AGNs. The highest-z quasar in our sample, J142952+544717 (z = 6.18), shows a luminosity distribution extending to with a not conspicuous median luminosity. On the other hand, J143023+420436 (z = 4.7), which hosts the most relativistic jet among known high-z blazars, is dominated in the high-luminosity regime ( ), making it an ideal target for multi-wavelength follow-up observations. J090630+693030 is found to have a rest-frame period of 182.46 days and J143023+420436 has a period of 16.89 days, both could be explained by the global evolution of plasmoid chains, in which magnetic islands formed during reconnection may merge successively.
Keywords
Cite
@article{arxiv.2509.12978,
title = {Magnetic Reconnection as a Potential Driver of X-ray Variability in Active Galactic Nuclei},
author = {Chen-Ran Hu and Yong-Feng Huang and Lang Cui and Hanle Zhang and Jiang-Tao Li and Li Ji and Jin-Jun Geng and Orkash Amat and Fan Xu and Chen Du and Wen-Long Zhang and Ze-Cheng Zou and Xiao-Fei Dong and Chen Deng and Pengfei Jiang and Jie Liao},
journal= {arXiv preprint arXiv:2509.12978},
year = {2025}
}
Comments
ApJ in press, 17 pages, 5 figures; DOI: 10.3847/1538-4357/adfed2