Interpreting Swift and NuSTAR Observations of the Low-luminosity Active Galactic Nucleus NGC 4278 with Radiatively Inefficient Accretion Flows and Implications for Neutrino Emission
用辐射低效吸积流解释 Swift 与 NuSTAR 对低光度活动星系核 NGC 4278 的观测及其中微子辐射启示
We report the first NuSTAR hard X-ray observations of the low-luminosity active galactic nucleus NGC 4278. The source is clearly detected beyond 10 keV with a hard X-ray spectrum consistent with a power law of photon index between 2.2 and 2.5 without evidence for a high-energy cutoff. The X-ray flux is low compared to the active state in 2021, but exhibits variability by a factor of ∼2 on a timescale of a month. We discuss the origin of the hard X-ray emission and explore its connection to gamma rays and high-energy neutrinos. We explain the X-ray data, including both quiescent and active states, using a radiatively inefficient accretion flow (RIAF) model with a variable accretion rate. We also show that TeV gamma rays cannot escape from the RIAF disk, and very high-energy gamma rays observed by LHAASO are likely to originate from outer regions such as jets and winds, which is consistent with our results favoring a magnetically arrested disk state of the RIAF disk. We also discuss hidden neutrino emission from RIAFs together with possible connections to coronae of active galactic nuclei with standard, radiatively efficient disks.
展开 ▾首次直接测量该源 10 keV 以上硬 X 射线谱,无高能截断;RIAF 模型以吸积率变化解释 X 射线态变,并推出 TeV 伽马射线需来自 R≳300 R_S 的喷流或外流,同时为把 AGN 冕的 X 射线-中微子关系外推至 LLAGN 提供支点。
NGC 4278 此前的秒差距尺度双面射电喷流(Giroletti+ 2005)和 XMM-Newton/Chandra 揭示的长期 X 射线变化(Younes+ 2010)已表明其低光度活动星系核兼具吸积流与喷流活动;本文用 NuSTAR 首次测量 10 keV 以上硬 X 射线谱,并以单区 RIAF 模型给出宁静态和中等态的参数,说明吸积率涨落足以解释 X 射线态变。结合 TeV 伽马射线的透明性约束,本文把 LHAASO 观测到的甚高能辐射推向外区喷流/风,这与 Chen+ 2026 提出的喷流外逆康普顿图像一致,其中 RIAF 光子可作为靶光子。在隐藏中微子源框架下(Kimura+ 2015;Murase+ 2016),RIAF 即使对伽马射线不透明仍可产生 PeV 中微子,本文进一步将 Kheirandish+ 2021 的 AGN 冕 X 射线-中微子关联向更低光度的 LLAGN 外推,并预言 NGC 4278 的中微子通量低于 IceCube-Gen2 的发现灵敏度。未来更长时标的多波段监测、更高能耗段中微子望远镜以及更精细的 RIAF/喷流/风联合建模,将有助于打破参数简并并检验这些预言。
预印本 2026-03-07 · 接收 2026-06-15 · 刊出 2026-07-24 · 收录 2026-08-20