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首页> 外文期刊>The Astrophysical journal >AN MHD AVALANCHE IN A MULTI-THREADED CORONAL LOOP
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AN MHD AVALANCHE IN A MULTI-THREADED CORONAL LOOP

机译:多角度冠状循环中的MHD雪崩

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For the first time, we demonstrate how an MHD avalanche might occur in a multithreaded coronal loop. Considering 23 non-potential magnetic threads within a loop, we use 3D MHD simulations to show that only one thread needs to be unstable in order to start an avalanche even when the others are below marginal stability. This has significant implications for coronal heating in that it provides for energy dissipation with a trigger mechanism. The instability of the unstable thread follows the evolution determined in many earlier investigations. However, once one stable thread is disrupted, it coalesces with a neighboring thread and this process disrupts other nearby threads. Coalescence with these disrupted threads then occurs leading to the disruption of yet more threads as the avalanche develops. Magnetic energy is released in discrete bursts as the surrounding stable threads are disrupted. The volume integrated heating, as a function of time, shows short spikes suggesting that the temporal form of the heating is more like that of nanoflares than of constant heating.
机译:首次,我们演示了MHD雪崩如何在多线程冠状循环中发生。考虑到一个回路中有23条非潜在的电磁线,我们使用3D MHD仿真显示即使开始的雪崩线处于边际稳定性之下,也只有一条线需要不稳定才能开始雪崩。这对日冕加热具有重大意义,因为它通过触发机制提供了能量消散。不稳定线程的不稳定性遵循了许多早期研究确定的演变。但是,一旦一个稳定线程中断,它将与相邻线程合并,并且此过程将中断其他附近的线程。然后,随着这些雪崩的发生,与这些中断的线程的合并将导致更多线程的中断。当周围的稳定线被破坏时,磁能以不连续的脉冲形式释放。体积积分加热作为时间的函数,显示出短的峰值,表明加热的时间形式更像是纳米火炬,而不是恒定加热。

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