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Regularized Biot-Savart Laws for Modeling Magnetic Flux Ropes

机译:正规化的Biot-Savart法律,用于造型磁通量绳索

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Many existing models assume that magnetic flux ropes play a key role in solar flares and coronal mass ejections (CMEs). It is therefore important to develop efficient methods for constructing flux-rope configurations constrained by observed magnetic data and the morphology of the pre-eruptive source region. For this purpose, we have derived and implemented a compact analytical form that represents the magnetic field of a thin flux rope with an axis of arbitrary shape and circular cross-sections. This form implies that the flux rope carries axial current I and axial flux F, so that the respective magnetic field is the curl of the sum of axial and azimuthal vector potentials proportional to I and F, respectively. We expressed the vector potentials in terms of modified Biot-Savart laws, whose kernels are regularized at the axis in such a way that, when the axis is straight, these laws define a cylindrical force-free flux rope with a parabolic profile for the axial current density. For the cases we have studied so far, we determined the shape of the rope axis by following the polarity inversion line of the eruptions' source region, using observed magnetograms. The height variation along the axis and other flux-rope parameters are estimated by means of potential-field extrapolations. Using this heuristic approach, we were able to construct preeruption configurations for the 2009 February 13 and 2011 October 1 CME events. These applications demonstrate the flexibility and efficiency of our new method for energizing pre-eruptive configurations in simulations of CMEs.
机译:许多现有模型假设磁通量绳索在太阳能耀斑和冠状质量弹射(CMES)中发挥着关键作用。因此,重要的是开发用于构建受观察到的磁数据的磁通绳配置的有效方法以及预发射源区的形态。为此目的,我们衍生和实施了一种紧凑的分析形式,其表示具有任意形状和圆形横截面的薄磁通绳索的磁场。该形式意味着磁通绳索携带轴向电流I和轴向磁通F,使得各个磁场分别是与I和F成比例的轴向和方位角矢量电位和的卷曲。我们以修改的BIOS-SAVART规律表示矢量势,其内核在轴上正规化,使得当轴线是直的,这些规律限定了一种圆柱形的力的磁通绳,轴向具有抛物线轮廓当前密度。对于我们到目前为止研究的情况,我们通过观察到的磁图跟随爆发源区的极性反转线来确定绳索轴的形状。沿轴和其他磁通绳索参数的高度变化通过潜在的场外推估计。使用这种启发式方法,我们能够为2011年和2011年10月1日CME事件构建2009年2月13日和2011年的预先发生配置。这些应用展示了我们新方法,用于在模拟CMES模拟中激励预发爆发配置的灵活性和效率。

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