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Electron Acceleration and Transport During the November 5, 1998 Solar Flare At ∼13:34 UT

机译:1998年11月5日太阳耀斑在UT 13:34时的电子加速和传输

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This paper deals with a detailed analysis of spectral and imaging observations of the November 5, 1998 (Hα 1B, GOES M1.5) flare obtained over a large spectral range, i.e., from hard X-rays to radiometric wavelengths. These observations allowed us to probe electron acceleration and transport over a large range of altitudes that is to say within small-scale (a few 103 km) and large-scale (a few 105 km) magnetic structures. The observations combined with potential and linear force-free magnetic field extrapolations allow us to show that: (i) Flare energy release and electron acceleration are basically driven by loop–loop interactions at two independent, low lying, null points of the active region magnetic field; (ii) <300 keV hard X-ray-producing electrons are accelerated by a different process (probably DC field acceleration) than relativistic electrons that radiate the microwave emission; and (iii) although there is evidence that hard X-ray and decimetric/metric radio-emitting electrons are produced by the same accelerator, the present observations and analysis did not allow us to find a clear and direct magnetic connection between the hard X-ray emitting region and the radio-emitting sources in the middle corona.
机译:本文详细分析了1998年11月5日(Hα1B,GOES M1.5)耀斑的光谱和成像观测结果,这些耀斑是在较大的光谱范围内(即从硬X射线到辐射波长)获得的。这些观察结果使我们能够在较大的高度范围内(即小规模(约103 km)和大尺度(约105 km)磁性结构中探测电子加速和传输。观察结果结合势能和无线性力的磁场外推法可以使我们证明:(i)耀斑的能量释放和电子加速度基本上是由有源区磁场的两个独立的低空零点处的环-环相互作用驱动的领域; (ii)与辐射微​​波发射的相对论电子相比,通过不同的过程(可能是DC场加速)来加速<300 keV硬X射线产生电子; (iii)尽管有证据表明硬X射线和辐射/公制发射电子是由相同的加速器产生的,但根据目前的观察和分析,我们无法在硬X-射线之间找到清晰直接的磁连接射线发射区和中间电晕的无线电发射源。

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  • 来源
    《Solar Physics 》 |2006年第1期| 75-95| 共21页
  • 作者单位

    Observatoire de Paris Section de Meudon LESIA;

    INPE-CRAAM Universidade Presbiteriana Mackenzie;

    Astronomical Institute Academy of Sciences of the Czech Republic;

    Observatoire de Paris Section de Meudon LESIA;

    National Astronomical Observatories Chinese Academy of Sciences;

    CRAAM Universidade Presbiteriana Mackenzie;

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