Evolution of Relative Magnetic Helicity: New Boundary Conditions for the Vector Potential
arXiv:1712.09219 · doi:10.1051/0004-6361/201628108
Abstract
We recently proposed a method to calculate the relative magnetic helicity in a finite volume for a given magnetic field which however required the flux to be balanced separately on all the sides of the considered volume. In order to allow finite magnetic fluxes through the boundaries, a Coulomb gauge is constructed that allows for global magnetic flux balance. We tested and verified our method in a theoretical fore-free magnetic field model. We apply the new method to the former calculation data and found a difference of less than 1.2\%. We also applied our method to the magnetic field above active region NOAA 11429 obtained by a new photospheric-data-driven MHD model code GOEMHD3. We analyzed the magnetic helicity evolution in the solar corona using our new method. It was found that the normalized magnetic helicityis equal to -0.038 when fast magnetic reconnection is triggered. This value is comparable to the previous value (-0.029) in the MHD simulations when magnetic reconnection happened and the observed normalized magnetic helicity (-0.036) from the eruption of newly emerging active regions. We found that only 8\% of the accumulated magnetic helicity is dissipated after it is injected through the bottom boundary. This is in accordance with the Woltjer conjecture. Only 2\% of magnetic helicity injected from the bottom boundary escapes through the corona. This is consistent with the observation of magnetic clouds, which could take away magnetic helicity into the interplanetary space, in the case considered here, several halo CMEs and two X-class solar flares origin from this active region.
Accepted to be pulished on A&A
References in corpus (5)
- Tracking Vector Magnetograms with the Magnetic Induction Equation
- Magnetic Field Confinement in the Corona: The Role of Magnetic Helicity Accumulation
- Magnetic helicity estimations in models and observations of the solar magnetic field. Part I: Finite volume methods
- Testing magnetic helicity conservation in a solar-like active event
- The dependence of the helicity bound of force-free magnetic fields on boundary conditions
Cited by in corpus (11)
- Fast Radio Bursts and the Axion Quark Nugget Dark Matter Model
- Magnetic helicity estimations in models and observations of the solar magnetic field. Part IV: Application to solar observations
- Eruptions and Flaring Activity in Emerging Quadrupolar Regions
- Buildup of the Magnetic Flux Ropes in Homologous Solar Eruptions
- Change ratios of magnetic helicity and magnetic free energy during major solar flares
- Comparison of Two Methods for Calculating Magnetic Helicity in the Solar Corona
- Relative Magnetic Helicity Based on a Periodic Potential Field
- How flux feeding causes eruptions of solar magnetic flux ropes with the hyperbolic flux tube configuration?
- Helicity shedding by flux rope ejection
- Neutron Stars as the Dark Matter detectors
- New Statistical Topology Theory Predicts Turbulent Magnetic Emergence from the Sun's Interior