Solar Flare Ribbons Structured by Uncombed Chromospheric Loops
由未梳状色球环结构化的太阳耀斑带
A part of the magnetic energy released during a flare is transported to the lower atmosphere. High-resolution observations show that flare ribbons, sites of energy deposition at the footpoints of flaring loops that appear bright in the chromosphere and transition region, are structured on small spatial scales on the order of 100 km. Based on idealized numerical models of flares it is suggested that the ribbon fine structures could originate from a tearing instability and the development of plasmoids in current sheets. Here we report on Fe I 5250.6 Å and Mg I b<SUB>2</SUB> 5173 Å spectral observations of a solar flare from the Tunable Magnetograph on board the SUNRISE III balloon-borne mission that reveal an intricate link between the flare ribbon structure and the ambient chromosphere. We identified uncombed chromospheric loops and nonflaring fine structures that are interspersed among brighter flare ribbon threads. These loops remain stable on timescales of minutes. Spectral lines from these regions show reduced emission or self-reversal in the line core compared with the immediately adjacent flare ribbons. We discuss the potential role of these structures in the onset of a flare. Furthermore, we suggest that irrespective of the complexities in the flaring current sheet, uncombed chromospheric loops and nonflaring fine structure might play a role in spatially modulating the flare energy deposition in the lower atmosphere.
展开 ▾首次直接探测到穿插在耀斑带之间的未梳状色球环,其谱线呈现核心自反转,为耀斑带空间调制提供了非撕裂模起源的解释,凸显色球底层磁场的控制作用。
以往高分辨率观测将耀斑带的精细结构归因于电流片撕裂模不稳定性产生的等离子体团 Thoen Faber+ 2025 French+ 2025。本工作基于 Sunrise III 对 M5 级耀斑的光谱成像,揭示其结构部分源自色球中预先存在的未梳状环与暗条结构,这些冷环在分钟尺度上保持稳定并伴有 Mg I b₂ 线核心自吸收。这一发现呼应了未梳状磁场模型 Solanki & Montavon 1993 以及更早的耀斑精细结构迹象 Jing+ 2016。未来耀斑数值模拟须纳入色球复杂磁场,以准确评估电流片重联与低层大气耦合的印记;同时,此类未梳状结构可能通过局部压力扰动触发截断重联,进而驱动耀斑爆发 Chitta+ 2026。
预印本 2026-06-09 · 接收 2026-05-30 · 刊出 2026-07-10 · 收录 2026-07-22