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High Energy Emission from Magnetar Due to Giant Flare

机译:巨大的耀斑导致电磁波产生的高能量排放

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We propose a theoretical model for magnetar giant flare to explain the flaring activity on 2004 December 27 from SGR1806-20 comprehensively. A global rearrangement is expected by the magnetic reconnection that requires explaining the giant SGR flares. In this paper we propose two regions of flares: preflare on the surface of magnetar and main burst at a distance of light cylinder radius. Acquiring the maximum potential drop on the magnetar surface, adopting space charge limited flow model, and using magnetic field B ≈ 1015 G, the luminosities of flare energies release for the preflare phase and main burst phase are found to be in the order of 1041 erg·sˉ1 and 1044 erg·sˉ1 respectively, conforming to magnetar burst energy and flare temperature is determined by considering black body radiation.
机译:我们提出了一个磁星大耀斑的理论模型来全面解释2004年12月27日SGR1806-20的耀斑活动。磁性重新连接预计将对全局进行重新排列,这需要解释巨大的SGR耀斑。在本文中,我们提出了耀斑的两个区域:磁星表面上的预耀斑和距离光柱半径一定距离的主脉冲。获得磁层表面上的最大电势降,采用空间电荷受限流模型,并使用磁场B≈1015 G,发现火炬前期和主爆裂相的火炬能量释放度约为1041 erg ·sˉ1和1044 erg·sˉ1分别符合黑洞辐射和火炬温度,这是通过考虑黑体辐射确定的。

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