Pre-flare and active region plasma flows and structure seen by the short wavelength camera on SOLAR-C/EUVST
SOLAR-C/EUVST短波相机看到的耀斑前和活动区等离子体流动与结构
The mechanisms triggering solar flares and driving coronal heating occur across wide temperature ranges on small spatial scales and short timescales, making them difficult to observe with current instrumentation. The upcoming SOLAR-C mission, launching in the late 2020s, will provide unprecedented plasma diagnostic capability with its high-throughput extreme-ultraviolet (EUV) spectroscopic telescope (EUVST), capable of ~0.2 arcsec/pix spatial sampling (~0.4 arcsec resolution), continuous temperature coverage from 0.02-15 MK, and exposure times down to 0.5 seconds. We present forward modelling of the spectrograph's short wavelength camera (170-210 Å; SOLAR-C/EUVST-SW) and its response to log T~6.2 coronal plasma in a three-dimensional MHD-simulated pre-flare active region. We compare this performance to that of the previous-generation EUV Imaging Spectrometer (EIS) on Hinode (SOLAR-B). Our results demonstrate that SOLAR-C/EUVST can distinguish individual flux tubes in simulated active region loops which Hinode/EIS cannot resolve. In simulated pre-flare plasma, SOLAR-C/EUVST captures sharp velocity gradients between adjacent upflowing and downflowing plasma which Hinode/EIS is unable to resolve. Doppler velocity measurement accuracy will reach better than 1 km/s in active regions. We show that this next-generation spectrograph can be expected to directly observe processes potentially related to flare triggering, such as plasma flows from low-altitude reconnection linked to emerging flux, and determine whether active region loops consist of a small number of strands or the hundreds predicted by magnetic reconnection-induced nanoflare heating models.
展开 ▾下一代极紫外光谱仪EUVST具备0.4角秒空间分辨率、0.02–15 MK温度覆盖和0.5秒极短曝光,首次揭示可分辨300公里尺度速度梯度和多束流管,有望直接观测耀斑触发过程的等离子体特征。
既往研究利用Hinode/EIS等已发现耀斑前存在非热致宽和上流等前兆信号Harra 2023; Imada+ 2014,但因空间分辨率不足难以直接解析触发过程。Cheung+ 2018三维MHD模拟提供了包含耀斑触发前复杂磁拓扑的活动区模型。本研究通过前向建模展示EUVST可清晰分辨模拟中约300公里分离的上喷和下喷流,并捕捉到与耀斑触发相关的低空重联特征,为直接观测磁重联驱动的耀班触发了可能。未来联合MUSE等高时间分辨率成像仪,EUVST有望系统追踪太阳大气从能量积累到爆发的全链条,推动日冕加热和耀斑物理的突破。
预印本 2026-07-13 · 刊出 2026-07-10 · 收录 2026-07-18