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The power output of spine and fan magnetic reconnection solutions

机译:脊柱和风扇磁性重新连接解决方​​案的功率输出

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摘要

The ability of three-dimensional magnetic “spine” and “fan” reconnection solutions to provide flarelike energy release is discussed. It is pointed out, on the basis of exact analytic solutions, that fast dissipation is possible only if the hydromagnetic pressure in the reconnection region becomes unbounded in the limit of small plasma resistivities. The implication is that some “saturation” of the power output is inevitable for realistic coronal plasmas. Estimates of the saturated power, based on limiting the flux pileup in the field, suggest that the geometry of the spine reconnection mechanism precludes significant flare energy release. However, the current sheet structures involved in fan reconnection seem able to release sufficient magnetic energy fast enough to account for modest flares, even under the conservative assumption of classical plasma resistivities.
机译:讨论了三维磁性“脊柱”和“风扇”重新连接解决方​​案提供火炬状能量释放的能力。要指出的是,基于精确的解析解,只有在重新连接区域中的水电磁压力变得不受限制的小等离子电阻率的情况下,才可能实现快速耗散。这意味着对于现实的日冕等离子体而言,功率输出的某些“饱和”是不可避免的。基于限制磁场中的通量堆积,对饱和功率的估计表明,脊柱重新连接机构的几何形状排除了显着的火炬能量释放。但是,即使在经典等离子电阻率的保守假设下,当前与风扇重新连接有关的薄板结构似乎也能够以足够快的速度释放足够的磁能,以解决中等程度的耀斑。

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