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Modelling the Global Solar Corona II: Coronal Evolution and Filament Chirality Comparison

机译:模拟全球日冕II:日冕演化和长丝手性比较

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This paper considers the hemispheric pattern of solar filaments using newly developed simulations of the real photospheric and 3D coronal magnetic fields over a six-month period, on a global scale. The magnetic field direction in the simulation is compared directly with the chirality of observed filaments, at their observed locations. In our model the coronal field evolves through a continuous sequence of nonlinear force-free equilibria, in response to the changing photospheric boundary conditions and the emergence of new magnetic flux. In total 119 magnetic bipoles with properties matching observed active regions are inserted. These bipoles emerge twisted and inject magnetic helicity into the solar atmosphere. When we choose the sign of this active-region helicity to match that observed in each hemisphere, the model produces the correct chirality for up to 96% of filaments, including exceptions to the hemispheric pattern. If the emerging bipoles have zero helicity, or helicity of the opposite sign, then this percentage is much reduced. In addition, the simulation produces a higher proportion of filaments with the correct chirality after longer times. This indicates that a key element in the evolution of the coronal field is its long-term memory, and the build-up and transport of helicity from low to high latitudes over many months. It highlights the importance of continuous evolution of the coronal field, rather than independent extrapolations at different times. This has significant consequences for future modelling such as that related to the origin and development of coronal mass ejections.
机译:本文使用全球范围内六个月期间内最新开发的真实光球和3D日冕磁场的模拟方法来考虑太阳能丝的半球模式。将模拟中的磁场方向直接与观察到的细丝在观察位置处的手性进行比较。在我们的模型中,日冕场响应于不断变化的光球边界条件和新磁通的出现,通过连续的非线性无力平衡序列演化。总共插入了119个具有与观察到的有源区域相匹配的特性的磁双极子。这些双极子扭曲地出现,并向太阳大气中注入磁螺旋。当我们选择此活动区域螺旋线的符号以匹配在每个半球中观察到的符号时,该模型将为多达96%的细丝产生正确的手征性,包括半球图案的例外。如果出现的偶极子的螺旋度为零,或相反符号的螺旋度为零,则该百分比会大大降低。此外,模拟在更长的时间后产生具有正确手性的更高比例的长丝。这表明日冕场演变的关键因素是其长期记忆,以及螺旋形从低纬度到高纬度的积累和运输历时数月。它强调了日冕场不断演变的重要性,而不是在不同时间进行独立的推断。这对未来的建模(例如与日冕物质抛射的起源和发展有关的建模)具有重大影响。

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