Cygnus X-3 as a PeVatron and the LHAASO 2025 data
天鹅座 X-3 作为 PeV 宇宙加速源及 LHAASO 2025 数据
We have recently argued that the high-mass X-ray binary Cygnus X-3 can accelerate cosmic rays (CR) beyond PeV energies. Meanwhile, the LHAASO collaboration published the measurement of an orbitally modulated photon flux from Cygnus X-3 extending up to 4 PeV. In this short extension of our previous work, we argue that these observations point towards CR acceleration in the jet, and secondary production in CRs scattering on gas from the wind and on stellar UV photons from the companion star. The latter channel leads naturally to a contribution to the photon flux peaking around PeV energies which is strongly orbitally modulated. The fast drop in the flux of these photons below PeV energies may be caused by absorption on an increased density of background photons in a line-driven stellar wind.
展开 ▾首次引入线驱动星风中背景光子密度的多重散射增强来解释 LHAASO 观测到的 PeV 能谱快速上升,摆脱了对强磁化加速机制的依赖;双成分(气体靶与紫外光子靶)模型自然产生与 GeV 波段一致的轨道调制,为该源作为银河 PeVatron 提供新证据。
天鹅座 X-3 作为银河 PeVatron 的猜想可追溯至 Protheroe 1994,Kachelriess+ 2025 近期确认其环境中多种加速机制可将宇宙线加速至数十 PeV。LHAASO 合作组 Cao+ 2025 发表的 4 PeV 光子流量显示出轨道调制,且相位与 GeV 波段一致(Dubus+ 2010),支持喷流内质子与星风气体和紫外光子相互作用的图像。本文在此基础上引入增强吸收的双成分模型,成功再现能谱快速上升和调制特征。未来更高显著性的调制测量将允许结合相对论集束效应限制喷流几何,并为中微子关联分析提供有力的时间模板。
预印本 2025-12-21 · 刊出 2026-07-07 · 收录 2026-07-22