Propagation Diagnostics of Supernova Remnant Environments around Young Repeating FRBs. I. Hydrodynamic Evolution of the Source-Local Dispersion Measure
年轻重复快速射电暴周围超新星遗迹环境的传播诊断。I. 源局域色散量的流体动力学演化
Repeating fast radio bursts may reside in young supernova remnant (SNR) environments whose evolving plasma contributes to the observed dispersion measure (DM). We use two-dimensional axisymmetric hydrodynamic simulations to study the interaction between a continuous anisotropic wind from a young neutron star and homologously expanding supernova ejecta. We follow the evolution to approximately 160 yr and calculate the source-local DM along different viewing directions, using a passive tracer to separate wind and non-wind contributions. In the fiducial model, the strongly polar-focused wind inflates a low-density cavity, while the swept-up shell remains broadly rounded and the DM shows moderate angular variation. The DM is dominated by ejecta and swept-up non-wind material. The solid-angle-averaged ambient-subtracted excess DM declines throughout the evolution, approximately following $t_{\rm age}^{-2}$ during the first several tens of years and becoming modestly steeper later. Variations in wind and ejecta parameters modify the normalization, early evolution, and viewing-angle dependence, but the angle-averaged DM declines in all models, while different bipolar wind profiles produce similar long-term evolution. For FRB 20190520B, the fiducial model reaches a decline rate comparable to the source-frame value inferred from observations at approximately 20 yr, when the mean excess DM is approximately $1.8 \times 10^2$ pc cm$^{-3}$. Thus, such a young environment can retain a substantial electron column while producing a rapid secular decrease. Repeater diversity suggests that SNR-driven expansion may coexist with additional time-dependent plasma structures or ionization changes.
展开 ▾首次在二维轴对称框架中追踪各向异性星风驱动的年轻 SNR 环境,用被动示踪剂分离星风/非星风物质,发现 DM 由抛射物和扫集壳层主导,角平均过剩 DM 近似 t^-2 下降;对 FRB 20190520B 给出约 20 yr 年龄和约 1.8×10^2 pc cm^-3 局部 DM,与一维模型互相印证。
此前对年轻重复 FRB 源环境的 DM 演化研究主要基于解析或一维模型:Piro & Gaensler 2018 与 Zhao & Wang 2021 等通过解析/一维方法讨论激波、电离和星风注入对 DM 的影响;Zhang+ 2026 的一维 SNR 模拟进一步纳入非平衡电离和辐射冷却,指出未激波抛射物主导随时间变化的 DM。本文在二维轴对称框架中引入连续各向异性星风与均匀超新星抛射物的相互作用,用被动示踪剂分离星风和非星风物质,发现角平均过剩 DM 先近似按 t^-2 下降、后略变陡,星风本身仅贡献小部分电子柱。与既往一维结果一致,本文也确认抛射物相关物质是主要演化电子柱,但进一步揭示了各向异性星风主要调控形态与视角依赖,而非平均下降趋势。未来若与 Margalit & Metzger 2018 所关注的引擎供能历史、三维 MHD 磁场演化及非平衡电离/冷却结合,有望对 FRB 20190520B 等重复暴的 DM-RM-射电透明度做更定量约束;重复暴多样性也暗示 SNR 膨胀驱动需与伴星风、电离变化等额外时变结构共存。
预印本 2026-08-02 · 收录 2026-08-20