Numerical Simulations of the Evolution of Solar Active Regions: the Complex AR12565 and AR12567
Advances in Astrophysics, vol.2, No.2, 103-116, 2017 We have performed numerical magnetohydrodynamic (MHD) simulations of two closed active regions (AR). The input magnetic field values were the coronal magnetic field computed as extrapolation coronal from observations of the photospheric magnetic f...
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Zusammenfassung: | Advances in Astrophysics, vol.2, No.2, 103-116, 2017 We have performed numerical magnetohydrodynamic (MHD) simulations of two
closed active regions (AR). The input magnetic field values were the coronal
magnetic field computed as extrapolation coronal from observations of the
photospheric magnetic field. The studied active regions, NOAA AR12565 and
AR12567, were registered as different bipolar region. Our investigation, the 3D
coronal extrapolations, as well as the numerical MHD experiments, revealed that
actually they evolved together as a quadrupolar active region. The second
region emerged later under the loops system of AR12565 and separated from this
one. A natural current sheet formed between then and it plays an important role
in the explosive events (flares and coronal mass ejections) occurrence. |
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DOI: | 10.48550/arxiv.1703.06266 |