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Numerical simulations of quiet Sun magnetic fields seeded by the Biermann battery

机译:Biermann电池播种静阳磁场的数值模拟

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The magnetic fields of the quiet Sun cover at any time more than 90% of its surface and their magnetic energy budget is crucial to explain the thermal structure of the solar atmosphere. One of the possible origins of these fields is the action of the local dynamo in the upper convection zone of the Sun. Existing simulations of the local solar dynamo require an initial seed field and sufficiently high spatial resolution in order to achieve the amplification of the seed field to the observed values in the quiet Sun. Here we report an alternative model of seeding based on the action of the Bierman battery effect. This effect generates a magnetic field due to the local imbalances in electron pressure in the partially ionized solar plasma. We show that the battery effect self-consistently creates from zero an initial seed field of a strength of the order of micro G, and together with dynamo amplification allows the generation of quiet Sun magnetic fields of a similar strength to those from solar observations.
机译:安静太阳盖的磁场随时超过90%的表面和它们的磁能预算至关重要,以解释太阳能大气的热结构。这些领域可能的起源之一是当地发电机在太阳的上对流区域中的动作。本地太阳能发电机的现有模拟需要初始种子场和足够高的空间分辨率,以便在安静的太阳中达到种子场的放大到观察到的值。在这里,我们报告了基于Bierman电池效应的作用的替代播种模型。由于部分电离的太阳等离子体中的电子压力中的局部不平衡,该效果产生磁场。我们表明,电池效果自始终从零的初始种子领域创造了微观的强度的初始种子场,并且与发电机放大器一起允许产生与太阳观察结果类似的静音太阳磁场。

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