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Repeated injections of energy in the first 600ms of the giant flare of SGR 1806-20

机译:在SGR 1806-20巨大耀斑的前600毫秒内重复注入能量

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摘要

The massive flare of 27 December 2004 from the soft gamma-ray repeater SGR 1806-20, a possible magnetar(1-3), saturated almost all gamma-ray detectors(4-7), meaning that the profile of the pulse was poorly characterized. An accurate profile is essential to determine physically what was happening at the source. Here we report the unsaturated gamma-ray profile for the first 600 ms of the flare, with a time resolution of 5.48 ms. The peak of the profile (of the order of 10(7) photons cm(-2) s(-1)) was reached similar to 50 ms after the onset of the flare, and was then followed by a gradual decrease with superposed oscillatory modulations possibly representing repeated energy injections with similar to 60-ms intervals. The implied total energy is comparable to the stored magnetic energy in a magnetar (similar to 10(47) erg) based on the dipole magnetic field intensity (similar to 10(15) G), suggesting either that the energy release mechanism was extremely efficient or that the interior magnetic field is much stronger than the external dipole field(2).
机译:2004年12月27日,软伽玛射线中继器SGR 1806-20发出了巨大的耀斑,这可能是一个电磁体(1-3),几乎使所有伽玛射线探测器(4-7)饱和,这意味着脉冲的轮廓很差表征。准确的配置文件对于从物理上确定源头发生的事情至关重要。在这里,我们报告了耀斑的前600毫秒的非饱和伽马射线剖面,时间分辨率为5.48毫秒。耀斑发作后约50 ms达到轮廓的峰值(约为10(7)个光子cm(-2)s(-1)),然后随着叠加的振荡逐渐减小调制可能代表以60毫秒为间隔的重复能量注入。根据偶极子的磁场强度(类似于10(15)G),隐含的总能量可与在磁星中存储的磁能(类似于10(47)erg)相比较,这表明能量释放机制非常有效或内部磁场比外部偶极子场强得多(2)。

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