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The Effect of Helicity Dissipation on the Critical State of an Avalanche Model for Solar Flares

机译:螺旋线消散对太阳耀斑雪崩模型临界状态的影响

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We perform numerical simulations using an avalanche model for solar flares, in which the effect of avalanche event duration is included and the lateral boundary condition can be either open or periodic. The results from the simulations show that self-organized criticality (SOC) exists under a variety of conditions of helicity dissipation, and they are similar in the sense that the indices of power-law distributions of avalanche sizes are the same, while the duration and waiting time distributions differ little. Of interest are: (1) if there exists helicity dissipation in the course of avalanches, SOC exists only when the amount of helicity dissipation per avalanche is small; (2) sudden reductions in the total helicity of the system do not severely disturb SOC, if the amount reduced is moderate; (3) the distribution of waiting times is shown to be exponential, in consistent with the Poisson statistics other avalanche models have predicted, and the exponent increases as the effect of event duration becomes larger. The self-similar structure of the avalanche time series is also examined. These results imply that, although helicity is dissipated in resistive diffusion of flares, the amount of dissipation should be small and the conservation law of helicity thus holds in an approximate sense. Also, the coronal mass ejections (CMEs), observed to take helicity out of the solar corona in an eruptive way, may disrupt the statistical equilibrium of the corona only temporarily.
机译:我们使用雪崩模型对太阳耀斑进行了数值模拟,其中包括了雪崩事件持续时间的影响,并且横向边界条件可以是开放的也可以是周期性的。仿真结果表明,自组织临界度(SOC)在各种螺旋度消散条件下均存在,并且在雪崩大小的幂律分布指数相同,持续时间和等待时间的分布差异很小。令人感兴趣的是:(1)如果在雪崩过程中存在螺旋度耗散,则仅在每个雪崩的螺旋度耗散量较小时才存在SOC; (2)如果减少的程度适中,则系统总螺旋度的突然减少不会严重干扰SOC; (3)显示等待时间的分布是指数的,与其他泊松模型预测的泊松统计数据一致,并且随着事件持续时间的影响变大,指数也增加。还检查了雪崩时间序列的自相似结构。这些结果暗示,尽管在耀斑的电阻扩散中消散了螺旋性,但是消散的量应该很小,因此螺旋性的守恒律在近似意义上成立。同样,观测到的日冕物质抛射(CME)会以喷发的方式从太阳日冕中带走螺旋线,可能只会暂时破坏日冕的统计平衡。

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  • 来源
    《Solar Physics 》 |2001年第2期| 345-369| 共25页
  • 作者

    Yung-Ping Chou;

  • 作者单位

    National Lien Ho Institute of Technology;

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  • 正文语种 eng
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