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首页> 外文期刊>The Astrophysical journal >AN MHD MODEL FOR MAGNETAR GIANT FLARES
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AN MHD MODEL FOR MAGNETAR GIANT FLARES

机译:磁巨型喇叭的MHD模型

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Giant flares on soft gamma-ray repeaters that are thought to take place on magnetars release enormous energy in a short time interval. Their power can be explained by catastrophic instabilities occurring in the magnetic field configuration and the subsequent magnetic reconnection. By analogy with the coronal mass ejection events on the Sun, we develop a theoretical model via an analytic approach for magnetar giant flares. In this model, the rotation and/or displacement of the crust causes the field to twist and deform, leading to flux rope formation in the magnetosphere and energy accumulation in the related configuration. When the energy and helicity stored in the configuration reach a threshold, the system loses its equilibrium, the flux rope is ejected outward in a catastrophic way, and magnetic reconnection helps the catastrophe develop to a plausible eruption. By taking SGR 1806–20 as an example, we calculate the free magnetic energy released in such an eruptive process and find that it is more than 1047 erg, which is enough to power a giant flare. The released free magnetic energy is converted into radiative energy, kinetic energy, and gravitational energy of the flux rope. We calculated the light curves of the eruptive processes for the giant flares of SGR 1806–20, SGR 0526–66, and SGR 1900+14, and compared them with the observational data. The calculated light curves are in good agreement with the observed light curves of giant flares.
机译:人们认为,软伽马射线中继器上的巨型耀斑会在短时间内释放出巨大的能量。它们的功率可以通过在磁场配置中发生的灾难性不稳定性以及随后的磁性重新连接来解释。通过类似于太阳上的日冕物质抛射事件,我们通过分析方法开发了一个磁星大耀斑的理论模型。在该模型中,地壳的旋转和/或位移引起磁场扭曲和变形,从而导致磁层中形成磁通链,并在相关构造中导致能量积累。当存储在配置中的能量和螺旋度达到阈值时,系统失去平衡,磁通绳以灾难性方式向外弹出,磁重新连接有助于灾难发展为可能的爆发。以SGR 1806–20为例,我们计算了在这样的喷发过程中释放的自由磁能,发现它大于1047 erg,足以为巨大的火炬供能。释放的自由磁能转换为通量绳的辐射能,动能和重力能。我们计算了SGR 1806–20,SGR 0526–66和SGR 1900 + 14的巨大耀斑爆发过程的光曲线,并将其与观测数据进行了比较。计算出的光曲线与观测到的大耀斑光曲线非常吻合。

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