论文标题

太阳冠状磁场的最小螺旋性

The Minimal Helicity of Solar Coronal Magnetic Fields

论文作者

Yeates, A. R.

论文摘要

潜在的场外推被广泛用作太阳冠状磁场的最小能量模型。作为比较其他磁场的参考,从任何合理的定义中,它们都没有全局(签名)磁性螺旋度。在这里,我们通过将其分解为单个场线的螺旋性来研究全球螺旋积分不可捕获的内部拓扑结构。这些是使用太阳周期24中磁力图观测值的潜在场外推,以及在偶极背景中单个双极区域的简单说明性模型。我们发现,现场线螺旋性的局部斑块主要来自强大的活动区域与其上覆的场之间的联系,因此总的无符号螺旋性与光晶和开放液的产物相关。在每个活动区域内,正和负螺旋性可能是不平衡的,但是符号的螺旋性仅约为未签名的螺旋性的十分之一。有趣的是,在24周期中,由单个大活动区域引起的无符号螺旋性有一个显着的峰。根据文献中的非电力模型,平均而言,所考虑的分辨率下的无符号螺旋性约为单个实际活动区域的典型签名螺旋性的两倍。

Potential field extrapolations are widely used as minimum-energy models for the Sun's coronal magnetic field. As the reference to which other magnetic fields are compared, they have -- by any reasonable definition -- no global (signed) magnetic helicity. Here we investigate the internal topological structure that is not captured by the global helicity integral, by splitting it into individual field line helicities. These are computed using potential field extrapolations from magnetogram observations over Solar Cycle 24, as well as for a simple illustrative model of a single bipolar region in a dipolar background. We find that localised patches of field line helicity arise primarily from linking between strong active regions and their overlying field, so that the total unsigned helicity correlates with the product of photospheric and open fluxes. Within each active region, positive and negative helicity may be unbalanced, but the signed helicity is only around a tenth of the unsigned helicity. Interestingly, in Cycle 24, there is a notable peak in unsigned helicity caused by a single large active region. On average, the total unsigned helicity at the resolution considered is approximately twice the typical signed helicity of a single real active region, according to non-potential models in the literature.

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