Influence of photospheric magnetic conditions on the catastrophic behaviors of flux ropes in active regions
arXiv:1701.01622 · doi:10.3847/1538-4357/835/2/211
Abstract
Since only the magnetic conditions at the photosphere can be routinely observed in current observations, it is of great significance to find out the influences of photospheric magnetic conditions on solar eruptive activities. Previous studies about catastrophe indicated that the magnetic system consisting of a flux rope in a partially open bipolar field is subject to catastrophe, but not if the bipolar field is completely closed under the same specified photospheric conditions. In order to investigate the influence of the photospheric magnetic conditions on the catastrophic behavior of this system, we expand upon the 2.5 dimensional ideal magnetohydrodynamic (MHD) model in Cartesian coordinates to simulate the evolution of the equilibrium states of the system under different photospheric flux distributions. Our simulation results reveal that a catastrophe occurs only when the photospheric flux is not concentrated too much toward the polarity inversion line and the source regions of the bipolar field are not too weak; otherwise no catastrophe occurs. As a result, under certain photospheric conditions, a catastrophe could take place in a completely closed configuration whereas it ceases to exist in a partially open configuration. This indicates that whether the background field is completely closed or partially open is not the only necessary condition for the existence of catastrophe, and that the photospheric conditions also play a crucial role in the catastrophic behavior of the flux rope system.
This paper has been accepted by the Astrophysical Journal
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Cited by in corpus (5)
- Eruption of Solar Magnetic Flux Ropes Caused by Flux Feeding
- Quantifying the Toroidal Flux of Pre-existing Flux Ropes of CMEs
- Confined and eruptive catastrophes of solar magnetic flux ropes caused by mass loading and unloading
- Upward and downward catastrophes of coronal magnetic flux ropes in quadrupolar magnetic fields
- How flux feeding causes eruptions of solar magnetic flux ropes with the hyperbolic flux tube configuration?