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Inflows towards active regions and the modulation of the solar cycle: A parameter study

机译:流向活动区和太阳周期的调制:参数研究

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Aims. We aim to investigate how converging flows towards active regions affect the surface transport of magnetic flux, as well as their impact on the generation of the Sun’s poloidal field. The inflows constitute a potential non-linear mechanism for the saturation of the global dynamo and may contribute to the modulation of the solar cycle in the Babcock-Leighton framework. Methods. We build a surface flux transport code incorporating a parametrized model of the inflows and run simulations spanning several cycles. We carry out a parameter study to assess how the strength and extension of the inflows affect the build-up of the global dipole field. We also perform simulations with different levels of activity to investigate the potential role of the inflows in the saturation of the global dynamo. Results. We find that the interaction of neighbouring active regions can lead to the occasional formation of single-polarity magnetic flux clumps that are inconsistent with observations. We propose the darkening caused by pores in areas of high magnetic field strength as a possible mechanism preventing this flux-clumping. We find that inflows decrease the amplitude of the axial dipole moment by ~ 30% , relative to a no-inflows scenario. Stronger (weaker) inflows lead to larger (smaller) reductions of the axial dipole moment. The relative amplitude of the generated axial dipole is about 9% larger after very weak cycles than after very strong cycles. This supports the idea that the inflows are a non-linear mechanism that is capable of saturating the global dynamo and contributing to the modulation of the solar cycle within the Babcock-Leighton framework.
机译:目的我们的目的是研究朝着活性区域的会聚流如何影响磁通量的表面传输,以及它们对太阳极向场的产生的影响。这些流入构成了全球发电机饱和的潜在非线性机制,并可能有助于对Babcock-Leighton框架中太阳周期的调制。方法。我们构建了一个包含流入参数化模型的表面通量传输代码,并运行跨越多个周期的模拟。我们进行了一项参数研究,以评估流入量的强度和范围如何影响全球偶极子场的形成。我们还执行了具有不同活动水平的模拟,以调查流入量在全球发电机饱和度中的潜在作用。结果。我们发现相邻活动区域的相互作用会导致偶尔形成与观测不一致的单极性磁通量团块。我们提出由高磁场强度区域中的孔引起的变黑是防止这种磁通量结块的可能机制。我们发现,相对于无流量的情况,流量使轴向偶极矩的振幅降低了〜30%。较强(较弱)的流入会导致轴向偶极矩的减小较大(较小)。在非常弱的循环之后,所产生的轴向偶极子的相对振幅比在非常强的循环之后大约大9%。这支持了流入是一种非线性机制的想法,该机制能够使整体发电机饱和并有助于在Babcock-Leighton框架内调节太阳周期。

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