Can a gamma-ray dim radio blazar produce a 200-PeV neutrino? The case of PMN J0606-0724 and KM3-230213A
一个伽马射线暗弱的射电耀变体能产生 200 PeV 中微子吗?——以 PMN J0606-0724 与 KM3-230213A 为例
An extremely energetic muon has been recently detected by the Cubic Kilometre Neutrino Telescope (KM3NeT), indicating the observation of a neutrino with the estimated energy of (2.2<SUP>+5.7</SUP> <SUB>-1.0</SUB>) × 10<SUP>17</SUP> eV. Radio blazar PMN J0606-0724, not detected in gamma rays, is located within the reported error region of the neutrino arrival direction, and was flaring at the time of the event. Here we demonstrate that the neutrino could be produced in a photohadronic interaction in its millimeter radio core, a parsec-scale region at the first collimation point of the jet. The necessary proton power is of order of the source's photon luminosity, and protons can be accelerated to the required energies in the core, while high-energy gamma rays cannot leave the source because of intense production of electron-positron pairs. Expected contribution of the population of similar flaring sources matches non-observation of other energetic events by neutrino telescopes.
展开 ▾将原先用于 TeV–PeV 中微子源的射电核机制推广到 200 PeV,定量说明伽马射线暗弱并非矛盾,而是源内电磁级联的预期结果。
KM3NeT+ 2025 探测到迄今最高能中微子 KM3-230213A,但其源仍不确定。此前射电亮耀变体已被认为与 TeV–PeV 中微子存在统计关联 Plavin+ 2021,而 Kalashev+ 2023 提出射电毫米核可作为中微子产生区。本文将这一机制推广到 PMN J0606-0724,利用耀发期射电监测和静默态 SED 缩放,说明质子可在核区加速到所需能量并与软光子作用产生约 200 PeV 中微子;高能伽马则在源内级联中被抑制,与 Fermi-LAT 非探测及 Baikal-GVD+ 2025 对弥散超高能中微子的上限一致。未来需通过更多 VLBI 监测、毫米/射电耀发关联和 MeV 伽马射线观测验证这类伽马暗弱射电耀变体作为极端中微子源。
预印本 2025-09-12 · 接收 2026-06-21 · 刊出 2026-08-12 · 收录 2026-08-20