Formation and dynamics of a solar eruptive flux tube
Solar eruptions are large explosions occurring in the solar atmosphere. Here, the authors perform magnetohydrodynamic simulations to unveil the dynamics of a solar eruption, and find that these are dominated by nonlinear processes involving flux tube evolution and reconnection.
Enregistré dans:
Auteurs principaux: | Satoshi Inoue, Kanya Kusano, Jörg Büchner, Jan Skála |
---|---|
Format: | article |
Langue: | EN |
Publié: |
Nature Portfolio
2018
|
Sujets: | |
Accès en ligne: | https://doaj.org/article/58e44c2c53864bb9a6b96371022cf9aa |
Tags: |
Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
|
Documents similaires
-
The role of non-axisymmetry of magnetic flux rope in constraining solar eruptions
par: Ze Zhong, et autres
Publié: (2021) -
Buildup of a highly twisted magnetic flux rope during a solar eruption
par: Wensi Wang, et autres
Publié: (2017) -
Data-driven magnetohydrodynamic modelling of a flux-emerging active region leading to solar eruption
par: Chaowei Jiang, et autres
Publié: (2016) -
Direct evidence that twisted flux tube emergence creates solar active regions
par: D. MacTaggart, et autres
Publié: (2021) -
The causes of spatiotemporal variations in erupted fluxes and compositions along a volcanic arc
par: C. B. Till, et autres
Publié: (2019)