Helicity transport from solar convection zone to interplanetary space
arXiv:1211.3190 · doi:10.1017/S1743921313003062
Abstract
Magnetic helicity is a physical quantity that describes field topology. It is also a conserved quantity as Berger in 1984 demonstrated that the total magnetic helicity is still conserved in the corona even when there is a fast magnetic reconnection. It is generally believed that solar magnetic fields, together with their helicity, are created in the convection zone by various dynamo processes. These fields and helicity are transported into the corona through solar photosphere and finally released into the interplanetary space via various processes such as coronal mass ejections (CMEs) and solar winds. Here I will give a brief review on our recent works, first on helicity observations on the photosphere and how to understand these observations via dynamo models. Mostly, I will talk about what are the possible consequences of magnetic helicity accumulation in the corona, namely, the formation of magnetic flux ropes, CMEs taking place as an unavoidable product of coronal evolution, and flux emergences as a trigger of CMEs. Finally, I will address on in what a form magnetic field in the interplanetary space would accommodate a large amount of magnetic helicity that solar dynamo processes have been continuously producing.
11 pages, 8 figures, to appear in IAUS 294 proceedings
References in corpus (5)
- Magnetic Field Confinement in the Corona: The Role of Magnetic Helicity Accumulation
- Helicity Observation of Weak and Strong Fields
- Hemispheric Helicity Trend for Solar Cycle 24
- The dependence of the helicity bound of force-free magnetic fields on boundary conditions
- Convective Babcock-Leighton Dynamo Models