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INTERNAL DYNAMICS OF A TWIN-LAYER SOLAR PROMINENCE

机译:双层太阳能突出的内部动态

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Modern observations revealed rich dynamics within solar prominences. The globally stable quiescent prominences, characterized by the presence of thin vertical threads and falling knobs, are frequently invaded by small rising dark plumes. These dynamic phenomena are related to magnetic Rayleigh-Taylor instability, since prominence matter, 100 times denser than surrounding coronal plasma, is lifted against gravity by weak magnetic field. To get a deeper understanding of the physics behind these phenomena, we use three-dimensional magnetohydrodynamic simulations to investigate the nonlinear magnetoconvective motions in a twin-layer prominence in a macroscopic model from chromospheric layers up to 30Mm height. The properties of simulated falling "fingers" and uprising bubbles are consistent with those in observed vertical threads and rising plumes in quiescent prominences. Both sheets of the twin-layer prominence show a strongly coherent evolution due to their magnetic connectivity, and demonstrate collective kink deformation. Our model suggests that the vertical threads of the prominence as seen in an edge-on view, and the apparent horizontal threads of the filament when seen top-down are different appearances of the same structures. Synthetic images of the modeled twin-layer prominence reflect the strong degree of mixing established over the entire prominence structure, in agreement with the observations.
机译:现代观测显示太阳能突出中的丰富力。通过小上升的暗羽常规,全球稳定的静态突出,其特征在于存在薄的垂直螺纹和下降旋钮。这些动态现象与磁性瑞利 - 泰勒不稳定性有关,因为突出物质而不是周围冠状等离子体的偏好100倍,通过弱磁场取消重力。为了更深入地了解这些现象背后的物理,我们使用三维磁流动正动力学模拟来研究从高达30mm高达30mm的宏观模型中的双层突出中的非线性磁能动力学。模拟落下的“手指”和起义气泡的性质与观察到的垂直线和静态突出中的上升羽毛的性质一致。两张双层突出表现出由于它们的磁性连接而产生的强烈相干的进化,并证明了集体扭结变形。我们的模型表明,突出的垂直线程在边缘视图中看到的突出线,并且在视线上显示时灯丝的表观水平螺纹是相同结构的不同外观。与观察结果同意,建模双层突出的合成图像反映了在整个突出结构上建立的强烈混合程度。

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