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Jets of energetic particles generated by magnetic reconnection at a three-dimensional magnetic null

机译:在三维磁空中磁重新连接产生的能量粒子的喷射

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Magnetic reconnection is a candidate mechanism for particle acceleration in a variety of astrophysical contexts. It is now widely accepted that reconnection plays a key role in solar flares, and reconstructions of coronal magnetic fields indicate that three-dimensional (3D) magnetic null points can be present during flares. We investigate particle acceleration during spine reconnection at a 3D magnetic null point, using a test particle numerical code. We observe efficient particle acceleration and find that two energetic populations are produced: a trapped population of particles that remain in the vicinity of the null, and an escaping population, which leave the configuration in two symmetric jets along field lines near the spine. While the parameters used in our simulation aim to represent solar coronal plasma conditions of relevance for acceleration in flares, the fact that the 3D spine reconnection configuration naturally results in energetic particle jets may be of importance in other astrophysical situations. We also compare the results obtained for the spine reconnection regime with those for the other possible mode of 3D reconnection, fan reconnection. We find that in the latter case energetic particle jets are not produced, though acceleration is observed.
机译:磁性重新连接是各种天体物理背景下的颗粒加速的候选机构。现在广泛地接受,重新连接在太阳能耀斑中起着关键作用,并且冠状磁场的重建指示在喇叭口期间可以存在三维(3D)磁空点。我们使用测试粒子数值代码调查在3D磁空穴点处的脊柱重新连接期间的粒子加速度。我们观察有效的粒子加速,并发现产生了两种能量群体:留在零附近的捕获粒子和逃逸群体,沿着脊柱附近的场线将配置留在两个对称喷射器中。虽然我们的模拟中使用的参数旨在代表太阳冠状等离子体的相关性与耀斑的加速度的相关性,但是3D脊柱重新连接配置自然导致能量粒子喷射的事实可能是在其他天体物理情况中的重要性。我们还比较脊柱重新连接制度的结果与其他可能的3D重新连接模式,风扇重新连接的结果。我们发现,在后一种情况下,虽然观察到加速,但是在后一种情况下不会产生精力粒子喷射。

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