首页> 外文期刊>The Astrophysical journal >DOUBLE CORONAL HARD AND SOFT X-RAY SOURCE OBSERVED BY RHESSI: EVIDENCE FOR MAGNETIC RECONNECTION AND PARTICLE ACCELERATION IN SOLAR FLARES
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DOUBLE CORONAL HARD AND SOFT X-RAY SOURCE OBSERVED BY RHESSI: EVIDENCE FOR MAGNETIC RECONNECTION AND PARTICLE ACCELERATION IN SOLAR FLARES

机译:雷西观测到的双冠硬和软X射线源:太阳耀斑中磁重合和颗粒加速的证据

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摘要

We present data analysis and interpretation of an Ml .4 class flare observed with the Reuven Ramaty High Energy Solar Spectroscopic Imager (RHESSI) on 2002 April 30. This event, with its footpoints occulted by the solar limb, exhibits a rarely observed, but theoretically expected, double-source structure in the corona. The two coronal sources, observed over the 6-30 keV range, appear at different altitudes and show energy-dependent structures with the higher energy emission being closer together. Spectral analysis implies that the emission at higher energies in the inner region between the two sources is mainly nonthermal, while the emission at lower energies in the outer region is primarily thermal. The two sources are both visible for about 12 minutes and have similar light curves and power-law spectra above about 20 keV. These observations suggest that the magnetic reconnection site lies between the two sources. Bidirectional outflows of the released energy in the form of turbulence and/or particles from the reconnection site could be the source of the observed radiation. The spatially resolved thermal emission below about 15 keV, on the other hand, indicates that the lower source has a larger emission measure but a lower temperature than the upper source. This is likely the result of the differences in the magnetic field and plasma density of the two sources.
机译:我们提供2002年4月30日使用鲁汶拉玛特高能太阳光谱成像仪(RHESSI)观测到的M.4类耀斑的数据分析和解释。该事件的脚点被太阳四肢掩盖,这很少见,但从理论上讲预期的是电晕中的双源结构。在6-30 keV范围内观察到的两个日冕源出现在不同的高度,并显示出与能量有关的结构,而较高的能量发射则相互靠近。光谱分析表明,两个源之间内部区域中较高能量的发射主要是非热的,而外部区域中较低能量的发射主要是热的。两种光源都可见约12分钟,并且在约20 keV以上具有相似的光曲线和幂律谱。这些观察结果表明,磁重连接部位位于两个源之间。释放的能量以湍流和/或颗粒的形式从重新连接位置双向流出可能是观察到的辐射源。另一方面,低于15 keV的空间分辨热发射表明,下部光源的发射量度较大,但温度却比上部光源低。这可能是两个源的磁场和等离子体密度不同的结果。

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