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首页> 外文期刊>The Astrophysical journal >MULTIWAVELENGTH OBSERVATIONS OF FLARES ON AD LEONIS
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MULTIWAVELENGTH OBSERVATIONS OF FLARES ON AD LEONIS

机译:AD LEONIS上耀斑的多波长观测

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摘要

We report results from a multiwavelength observing campaign conducted during 2000 March on the flare star AD Leo. Simultaneous data were obtained from several ground- and space-based observatories, including observations of eight sizable flares. We discuss the correlation of line and continuum emission in the optical and ultraviolet wavelength regimes, as well as the flare energy budget, and we find that the emission properties are remarkably similar even for flares of very different evolutionary morphology. This suggests a common heating mechanism and atmospheric structure that are independent of the detailed evolution of individual flares. We also discuss the Neupert effect, chromospheric line broadening, and velocity fields observed in several transition region emission lines. The latter show significant downflows during and shortly after the flare impulsive phase. Our observations are broadly consistent with the solar model of chromospheric evaporation and condensation following impulsive heating by a flux of nonthermal electrons. These data place strong constraints on the next generation of radiative hydrodynamic models of stellar flares.
机译:我们报告了2000年3月对耀斑恒星AD Leo进行的多波长观测活动的结果。从数个地面和天基观测站获得了同时的数据,包括对八个大火炬的观测。我们讨论了在光和紫外波长范围内线和连续体发射的相关性,以及火炬能量收支,我们发现即使对于演化形态非常不同的火炬,其发射特性也非常相似。这表明与单个火炬的详细演变无关的常见加热机制和大气结构。我们还将讨论Neupert效应,色球层线展宽以及在多个过渡区发射线中观察到的速度场。后者在火炬脉冲阶段期间和之后不久就显示出明显的下流。我们的观察结果与非热电子通量脉冲加热后色球蒸发和凝结的太阳模型大致一致。这些数据对下一代恒星耀斑的辐射流体动力学模型施加了强大的约束。

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