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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >The spectroscopy of individual terrestrial gamma-ray flashes: Constraining the source properties
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The spectroscopy of individual terrestrial gamma-ray flashes: Constraining the source properties

机译:个别陆地的光谱伽马射线闪光:限制源属性

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We report on the spectral analysis of individual terrestrial gamma-ray flashes (TGFs) observed with the Fermi Gamma-ray Burst Monitor (GBM). The large GBM TGF sample provides 46 events suitable for individual spectral analysis: sufficiently bright, localized by ground-based radio, and with the gamma rays reaching a detector unobstructed. These TGFs exhibit diverse spectral characteristics that are hidden when using summed analysis methods. We account for the low counts in individual TGFs by using Poisson likelihood, and we also consider instrumental effects. The data are fit with models obtained from Monte Carlo simulations of the large-scale Relativistic Runaway Electron Avalanche (RREA) model, including propagation through the atmosphere. Source altitudes ranging from 11.6 to 20.2 km are simulated. Two beaming geometries were considered: In one, the photons retain the intrinsic distribution from scattering (narrow), and in the other, the photons are smeared into a wider beam (wide). Several TGFs are well fit only by narrow-beam models, while others favor wide-beam models. Large-scale RREA models can accommodate both narrow and wide beams, with narrow beams suggest large-scale RREA in organized electric fields while wide beams may imply converging or diverging electric fields. Wide beams are also consistent with acceleration in the electric fields of lightning leaders, but the TGFs that favor narrow-beam models appear inconsistent with some lightning leader models.
机译:我们报告的光谱分析地面伽马射线闪光(tgf信号)费米伽玛射线爆发监视器(GBM)。大型GBM TGF示例提供了46个合适的事件对个人光谱分析:充分明亮,局部地面电台,伽马射线到达探测器通畅。这些tgf信号表现出不同的光谱使用总结时特征是隐藏的分析方法。在个别tgf信号通过使用泊松概率,我们还考虑仪器的影响。从蒙特获得的数据是符合模型卡洛模拟大规模的相对论失控的电子雪崩(RREA)模型,包括通过大气传播。源的高度从11.6到20.2公里模拟。认为:在一个光子保留内在的分布从散射(狭窄),另,涂抹成一个光子更广泛的梁(宽)。通过窄射线模型,而另一些忙宽束模型。适应狭窄和宽光束窄光束建议大规模RREA有组织的电场虽然宽光束意味着收敛或发散的电场。宽光束也符合加速度闪电电场的领导人,但是啦,忙窄射线模型出现与一些闪电领袖模型不一致。

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