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首页> 外文期刊>The Astrophysical Journal. Supplement Series >Time-resolved properties and global trends in dme flares from simultaneous photometry and spectra
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Time-resolved properties and global trends in dme flares from simultaneous photometry and spectra

机译:同步光度法和光谱法对DME耀斑的时间分辨特性和全球趋势

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摘要

We present a homogeneous analysis of line and continuum emission from simultaneous high-cadence spectra and photometry covering near-ultraviolet and optical wavelengths for 20 M dwarf flares. These data were obtained to study the white-light continuum components at bluer and redder wavelengths than the Balmer jump. Our goals were to break the degeneracy between emission mechanisms that have been fit to broadband colors of flares and to provide constraints for radiative-hydrodynamic (RHD) flare models that seek to reproduce the white-light flare emission. The main results from the analysis are the following: (1) the detection of Balmer continuum (in emission) that is present during all flares and with a wide range of relative contributions to the continuum flux at bluer wavelengths than the Balmer jump; (2) a blue continuum at flare maximum that is linearly decreasing with wavelength from λ = 4000-4800 ?, indicative of hot, blackbody emission with typical temperatures of T _(BB) 9000-14, 000 K; (3) a redder continuum apparent at wavelengths longer than Hβ (λ ? 4900 ?) which becomes relatively more important to the energy budget during the late gradual phase. The hot blackbody component and redder continuum component have been detected in previous studies of flares. However, we have found that although the hot blackbody emission component is relatively well-represented by a featureless, single-temperature Planck function, this component includes absorption features and has a continuum shape strikingly similar to the spectrum of an A-type star as directly observed in our flare spectra. New model constraints are presented for the time evolution among the hydrogen Balmer lines and between Ca II K and the blackbody continuum emission. We calculate Balmer jump flux ratios and compare to the solar-type flare heating predictions from RHD models. The model ratios are too large and the blue-optical (λ = 4000-4800 ?) slopes are too red in both the impulsive and gradual decay phases of all 20 flares. This discrepancy implies that further work is needed to understand the heating at high column mass during dMe flares.
机译:我们对20 M矮耀斑的近紫外光谱和光学波长的同时高节奏光谱和光度法进行线和连续谱发射的均相分析。获得这些数据是为了研究比Balmer跃迁更蓝和更红的波长的白光连续体分量。我们的目标是打破适合宽带火炬颜色的发射机制之间的退化,并为寻求重现白光火炬发射的辐射流体动力学(RHD)火炬模型提供约束。分析的主要结果如下:(1)检测所有耀斑中存在的Balmer连续谱(在发射中),并且在比Balmer跃迁更蓝的波长处对连续谱通量具有较大的相对贡献; (2)在耀斑最大值处的一个蓝色连续体,随着波长从λ= 4000-4800?线性减小,这表示典型温度为T _(BB)9000-14,000 K时,黑体发出热的光; (3)在波长大于Hβ(λ≥4900λ)处出现的红色连续体,这对于后期渐进阶段的能量收支而言变得相对更为重要。在以前的耀斑研究中已经检测到热的黑体成分和红色连续体成分。然而,我们发现,尽管热黑体发射分量由无特征的单温度普朗克函数相对较好地表示,但该分量具有吸收特征,并具有与A型恒星光谱相似的连续谱形状,与直接在我们的耀斑光谱中观察到。针对氢巴尔默谱线之间以及Ca II K与黑体连续谱发射之间的时间演化提出了新的模型约束。我们计算巴尔默跳跃通量比,并与RHD模型对太阳型火炬加热预测相比较。在所有20个耀斑的脉冲和渐进衰减阶段中,模型比率太大,并且蓝光(λ= 4000-4800?)斜率太红。这种差异意味着需要进一步的工作来理解在dMe爆发期间高柱质量下的加热。

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