Unveiling the Local Environment of FRB 20220912A: Subarcsecond 4-26 GHz Radio Continuum Mapping
揭示 FRB 20220912A 的局地环境:亚角秒 4–26 GHz 射电连续谱成图
The local environments of repeating fast radio bursts (FRBs) provide critical clues to their progenitors. While some active repeaters (e.g., FRB 20121102A and FRB 20190520B) are embedded in compact persistent radio sources (PRS), others appear to reside in cleaner environments. We present a high-resolution, multifrequency (4-26 GHz) continuum study of the hyperactive repeater FRB 20220912A using the Karl G. Jansky Very Large Array (VLA). We report the discovery of a previously unknown radio source distinct from the compact PRSs seen in other FRBs, spatially coincident with the FRB position and offset by ≈300 mas (≈450 pc) from the host galaxy's center. The absence of continuum emission in archival milliarcsecond-resolution VLBI observations indicates that the source is resolved out, ruling out a hypercompact (<1 pc) central-engine-powered origin. We constrain the physical diameter of the emitting region between 75 pc and 190 pc. We further demonstrate that the source is characterized by a steep nonthermal spectral index (α ≈ -0.73) and a remarkably high star formation rate surface density Σ<SUB>SFR</SUB> ≳ 13 M<SUB>⊙</SUB> yr<SUP>-1</SUP> kpc<SUP>-2</SUP>. We argue that this emission is best explained as a compact star-forming region within the host galaxy. This association with a site of ongoing star formation provides strong observational support for a core-collapse supernova origin for the progenitor of FRB 20220912A, highlighting that at least a subpopulation of active, repeating FRBs originates from young magnetars embedded in intense star-forming knots.
展开 ▾发现一类不同于已知紧凑 PRS 的百 pc 尺度恒星形成区辐射;亚角秒成图+VLBI 非探测将尺度限制在 75–190 pc,直接把活跃重复暴与恒星形成活动关联。
过去对重复 FRB 局地环境的射电研究多聚焦与暴位置重合的紧凑持续源,部分活跃重复暴则似位于较干净环境。本研究对 FRB 20220912A 的高分辨率多频成图显示,其近邻辐射并非亚 pc 尺度的致密 PRS,而是尺度约 75–190 pc、陡谱非热且具有极高恒星形成面密度的恒星形成区。该结果表明重复暴的局地环境并非单一类型,至少存在以年轻星族和恒星形成活动为特征的一类。未来通过 VLBI 与宽带射电、光学/红外联合成图,有望区分中心引擎驱动的紧凑源与恒星形成区等延展辐射,并限制不同 FRB 子类的演化路径。
接收 2026-08-05 · 刊出 2026-08-27 · 收录 2026-08-31