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2025 年 8 月 2 日 星期六 · 数据截至 arXiv / ADS 最新收录日
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优先级 90 · X 射线双星与吸积致密天体 · 黑洞/中子星吸积 · X 射线暂现与暴发 · X 射线定时与能谱 · Insight-HXMT

Dynamic Disk─Corona Coupling during the State Transition of Swift J1727.8─1613

Swift J1727.8–1613 态转变期间盘–冕动态耦合

Han He (Department of Astronomy, School of Physics and Technology, Wuhan University, Wuhan 430072, People’s Republic of China), Yi Long (Department of Astronomy, Nanjing University, 163 Xianlin Avenue, Nanjing 210023, People’s Republic of China), Bei You (Department of Astronomy, School of Physics and Technology, Wuhan University, Wuhan 430072, People’s Republic of China) et al.

原文摘要Abstract

State transitions during outbursts of black hole X-ray binaries (BHXBs) exhibit complex, rapidly evolving disk─corona coupling. Understanding this dynamic phase is essential for deciphering accretion physics and the mechanisms that drive outbursts, yet it remains poorly understood because of the scarcity of high-quality, high-cadence observations. Here, we present an analysis of observations from the Hard X-ray Modulation Telescope during the 2023 outburst of the newly discovered low-mass BHXB Swift J1727.8─1613. Follow-up, high-cadence monitoring reveals pronounced variability in disk emission, attributable to fluctuations in the accretion rate. These disk fluctuations exhibit damped amplitudes and shortened flare periods. This evolving disk emission modulates the supply of soft seed photons to the corona, producing a dynamically changing positive correlation between the photon index Γ and the Comptonization luminosity L<SUB>Comp</SUB>. As the transition proceeds, the correlation shifts toward higher Γ and a narrower range of L<SUB>Comp</SUB>. We further suggest that the damped disk variability arises from fluctuations generated at large disk radii and propagating inward, possibly linked to the thermal─viscous disk instability.

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亮点

首次在约 43 天硬-软态转变中分离出吸积盘日尺度阻尼多耀发和周期缩短,证明盘发射变化由吸积率波动主导;用传播涨落模型解释阻尼,并揭示 Γ–L_Comp 正相关随转变动态漂移。

脉络与展望

黑洞 X 射线双星硬-软态转变中的盘–冕耦合一直受观测频次限制;既往研究基于 Done+ 2007 的吸积流模型和 Belloni+ Motta 2016 的态分类框架刻画大致演化。本文借助 HXMT 对 Swift J1727.8–1613 的超长转变期监测,将盘日尺度阻尼耀发与冕响应联系起来,发现外盘吸积率涨落经粘性阻尼向内传播可解释观测 Lyubarskii 1997 Zdziarski+ 2009。涨落起源可能来自热-粘性盘不稳定性的 reflare Dubus+ 2019。未来更高频次的多波段协同观测有望把外盘不稳定性、盘风和内盘–冕几何统一到态转变模型中。

预印本 2025-08-02 · 接收 2026-06-09 · 刊出 2026-07-23 · 收录 2026-08-20