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Turbulent magnetic pumping in a Babcock-Leighton solar dynamo model

机译:Babcock-Leighton太阳能发电机模型中的湍流磁力泵送

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摘要

Context. The turbulent pumping effect corresponds to the transport of magnetic flux due to the presence of density and turbulence gradients in convectively unstable layers. In the induction equation it appears as an advective term and for this reason it is expected to be important in the solar and stellar dynamo processes. Aims. We explore the effects of turbulent pumping in a flux-dominated Babcock-Leighton solar dynamo model with a solar-like rotation law. Methods. As a first step, only vertical pumping has been considered through the inclusion of a radial diamagnetic term in the induction equation. In the second step, a latitudinal pumping term was included and then, a near-surface shear was included. Results. The results reveal the importance of the pumping mechanism in solving current limitations in mean field dynamo modeling, such as the storage of the magnetic flux and the latitudinal distribution of the sunspots. If a meridional flow is assumed to be present only in the upper part of the convective zone, it is the full turbulent pumping that regulates both the period of the solar cycle and the latitudinal distribution of the sunspot activity. In models that consider shear near the surface, a second shell of toroidal field is generated above r = 0.95 R(circle dot) at all latitudes. If the full pumping is also included, the polar toroidal fields are efficiently advected inwards, and the toroidal magnetic activity survives only at the observed latitudes near the equator. With regard to the parity of the magnetic field, only models that combine turbulent pumping with near-surface shear always converge to the dipolar parity. Conclusions. This result suggests that, under the Babcock-Leighton approach, the equartorward motion of the observed magnetic activity is governed by the latitudinal pumping of the toroidal magnetic field rather than by a large scale coherent meridional flow. Our results support the idea that the parity problem is related to the quadrupolar imprint of the meridional flow on the poloidal component of the magnetic field and the turbulent pumping positively contributes to wash out this imprint.
机译:上下文。由于在对流不稳定层中存在密度和湍流梯度,所以湍流泵浦效应对应于磁通量的传输。在归纳方程中,它表现为对流项,因此,它有望在太阳和恒星发电机过程中发挥重要作用。目的我们在具有类似太阳旋转定律的通量主导型Babcock-Leighton太阳发电机模型中探索湍流泵送的影响。方法。第一步,通过在感应方程中包含径向反磁性项,仅考虑垂直泵送。在第二步中,包括横向泵送项,然后包括近地表剪切。结果。结果表明,抽运机制对于解决平均场发电机建模中的电流限制(例如磁通量的存储和黑子的纬度分布)的重要性。如果假定子午流仅存在于对流区的上部,则全湍流泵送既调节了太阳周期的周期,又调节了太阳黑子活动的纬度分布。在考虑表面附近剪切的模型中,在所有纬度上,r = 0.95 R(圆点)以上都会产生第二个环形场。如果还包括全部泵浦,则极环形磁场将有效地向内平流,并且环形磁活动仅在赤道附近的观测纬度处才能幸存。关于磁场的奇偶性,只有将湍流泵浦与近地表剪切相结合的模型始终会收敛于偶极奇偶性。结论。该结果表明,在Babcock-Leighton方法下,观测到的磁活动的赤道运动是由环向磁场的横向泵浦而不是大规模的相干子午流控制的。我们的结果支持这样的想法,即奇偶校验问题与子午流在磁场的极向分量上的四极压印有关,湍流泵浦积极地洗净了这种压印。

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