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Cycle-dependent and cycle-independent surface tracers of solar magnetic activity

机译:循环依赖性和循环无关的太阳能磁性表面示踪剂

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We consider several tracers of magnetic activity that separate cycle-dependent contributions to the background solar magnetic field from those that are independent of the cycle. The main message is that background fields include two relative separate populations. The background fields with a strength up to 100 Mx cm~(-2) are very poorly correlated with the sunspot numbers and vary little with the phase of the cycle. In contrast, stronger magnetic fields demonstrate pronounced cyclic behaviour. Small-scale solar magnetic fields demonstrate features of fractal intermittent behaviour, which requires quantification. We investigate how the observational estimate of the solar magnetic flux density B depends on resolution D in order to obtain the scaling ln B_D = -k ln D + a in a reasonably wide range. The quantity k demonstrates cyclic variations typical of a solar activity cycle. k depends on the magnetic flux density, i.e. the ratio of the magnetic flux to the area over which the flux is calculated, at a given instant. The quantity a demonstrates some cyclic variation, but it is much weaker than in the case of k. The scaling is typical of fractal structures. The results obtained trace small-scale action in the solar convective zone and its coexistence with the conventional large-scale solar dynamo based on differential rotation and mirror-asymmetric convection. Here we discuss the message for solar dynamo studies hidden in the above results.
机译:我们考虑了几个磁性活动的示踪剂,使与背景太阳能磁场不同的周期依赖贡献从独立于循环的那些。主要消息是背景字段包括两个相对单独的群体。具有高达100mL cm〜(-2)的强度的背景场与太阳黑子数量非常不好关,并且循环阶段略微不同。相比之下,更强的磁场展示明显的循环行为。小规模的太阳磁场展示了分形间歇行为的特征,需要量化。我们研究了太阳能磁通密度B的观察估计如何取决于分辨率D,以便在合理宽范围内获得缩放LN B_D = -K LN D + A。量k展示了典型的太阳能活动周期的循环变化。 K取决于磁通密度,即磁通量与给定瞬间计算磁通量的区域的比率。数量A表现出一些循环变异,但它比K的情况较弱。缩放是分形结构的典型形式。结果基于差分旋转和镜像 - 不对流对流,在太阳对流区和与传统的大型太阳能发电机共存的迹象中的小规模动作。在这里,我们讨论隐藏在上述结果中的太阳能发电机研究的信息。

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