Relative field line helicity of a large eruptive solar active region
arXiv:2103.03643 · doi:10.1051/0004-6361/202140384
Abstract
Context. Magnetic helicity is a physical quantity of great importance in the study of astrophysical and natural plasmas. Although a density for helicity cannot be defined, a good proxy for it is field line helicity. The appropriate quantity for use in solar conditions is relative field line helicity (RFLH). Aims. This work aims to study in detail the behaviour of RFLH, for the first time, in a solar active region (AR). Methods. The target active region is the large, eruptive AR 11158. In order to compute RFLH and all other quantities of interest we use a non-linear force-free reconstruction of the AR coronal magnetic field of excelent quality. Results. We find that the photospheric morphology of RFLH is quite different than that of the magnetic field or of the electrical current, and this is not sensitive to the chosen gauge in the computation of RFLH. The value of helicity experiences a large decrease, 25% of its pre-flare value, during an X-class flare of the AR, a change that is also depicted in the photospheric morphology of RFLH. Moreover, the area of this change coincides with the area that encompasses the flux rope, the magnetic structure that later erupted. Conclusions. The use of RFLH can provide important information about the value and location of the magnetic helicity expelled from the solar atmosphere during eruptive events.
accepted by Astronomy & Astrophysics
References in corpus (13)
- The Solar Orbiter mission -- Science overview
- Observation of An Evolving Magnetic Flux Rope Prior To and During A Solar Eruption
- Decoding the Pre-Eruptive Magnetic Field Configurations of Coronal Mass Ejections
- Magnetic helicity estimations in models and observations of the solar magnetic field. Part I: Finite volume methods
- Evolution of field line helicity during magnetic reconnection
- Validation and Benchmarking of a Practical Free Magnetic Energy and Relative Magnetic Helicity Budget Calculation in Solar Magnetic Structures
- Magnetic helicity budget of solar active regions prolific of eruptive and confined flares
- On the reliability of magnetic energy and helicity computations based on nonlinear force-free coronal magnetic field models
- When do solar erupting hot magnetic flux ropes form?
- Magnetic Flux Rope Identification and Characterization from Observationally-Driven Solar Coronal Models
- Deducing the reliability of relative helicities from nonlinear force-free coronal models
- Relative magnetic field line helicity
- On measuring divergence for magnetic field modeling
Cited by in corpus (3)
- Magnetic Helicity and Free Magnetic Energy as Tools to Probe Eruptions in two Differently Evolving Solar Active Regions
- Magnetic field extrapolation in active region well comparable with observations in multiple layers
- The Properties of Non-Potential Magnetic Field Parameters in a Super-Active Region with Complex Structures and Strong Solar Flares