论文标题

在洛伦兹力和太阳光电新兴磁场的扭矩上

On the Lorentz Force and Torque of Solar Photospheric Emerging Magnetic Fields

论文作者

Duan, Aiying, Jiang, Chaowei, Toriumi, Shin, Syntelis, Petros

论文摘要

太阳能发电机产生和加剧的磁通量出现到太阳大气中,形成了包括黑子在内的活动区域(ARS)。现有的通量出现理论表明,磁通量可以通过对流带浮动,但被困在照相球场,而其进一步升入大气中的磁通量却诉诸于帕克浮力不稳定。为了触发这种不稳定,光球中的洛伦兹力必须像气压梯度一样大,以支撑重力额外的质量。这自然会导致强烈的无效照相球,这确实在典型的理想化数值模拟中显示了从光球下方进入电晕的通量管浮力的数值模拟。在这里,我们对新兴的光磁场中的归一化洛伦兹力和扭矩的扩展进行了统计研究,并具有大量的SDO/HMI矢量磁图样品。我们发现,光球场平均具有相当小的洛伦兹力和扭矩,因此非常接近无力的状态,这与理论以及理想化的磁通出现模拟不一致。此外,力量和扭矩的小范围似乎不受新兴AR的大小,出现率或田地的非电位的影响。该结果对未来发展的理论发展和磁通出现的模拟构成了重要限制。

Magnetic flux generated and intensified by the solar dynamo emerges into the solar atmosphere, forming active regions (ARs) including sunspots. Existing theories of flux emergence suggest that the magnetic flux can rise buoyantly through the convection zone but is trapped at the photosphere, while its further rising into the atmosphere resorts to the Parker buoyancy instability. To trigger such an instability, the Lorentz force in the photosphere needs to be as large as the gas pressure gradient to hold up an extra amount of mass against gravity. This naturally results in a strongly non-force-free photosphere, which is indeed shown in typical idealized numerical simulations of flux tube buoyancy from below the photosphere into the corona. Here we conduct a statistical study of the extents of normalized Lorentz forces and torques in the emerging photospheric magnetic field with a substantially large sample of SDO/HMI vector magnetograms. We found that the photospheric field has a rather small Lorentz force and torque on average, and thus is very close to a force-free state, which is not consistent with theories as well as idealized simulations of flux emergence. Furthermore, the small extents of forces and torques seem not to be influenced by the emerging AR's size, the emergence rate, or the non-potentiality of the field. This result puts an important constraint on future development of theories and simulations of flux emergence.

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