English

Polarity inversion line helicities and solar eruptivity

Solar and Stellar Astrophysics 2025-09-25 v1

Abstract

This work examines the relationship between solar eruptivity and the relative helicity that is contained around the polarity inversion line (PIL) of the magnetic field, along with its current-carrying component. To this end, we analyze the evolution of the PIL helicities in a sample of 40\sim 40 solar active regions which exhibited more than 200 flares of class M or higher. The computation of the PIL helicities is accomplished with the help of relative field line helicity, the recently-developed proxy for the density of relative helicity, following the extrapolation of the 3D coronal magnetic field with a nonlinear force-free method. We find that, on average, the relative helicity of the PIL decreases significantly, by more than 10%10\%, during stronger eruptive flares (M5.0 class and above), while smaller changes are observed for confined and/or weaker flares. The PIL current-carrying helicity shows higher-magnitude decreases in both strong and weak flares, reaching 20%20\% average changes during the stronger eruptive flares. Notably, the PIL current-carrying helicity displays the most pronounced distinction between eruptive and confined flares, indicating its strong potential as a diagnostic of solar eruptivity. We discuss the implications of these findings for solar flare forecasting.

Keywords

Cite

@article{arxiv.2509.19864,
  title  = {Polarity inversion line helicities and solar eruptivity},
  author = {K. Moraitis and J. K. Thalmann},
  journal= {arXiv preprint arXiv:2509.19864},
  year   = {2025}
}

Comments

accepted by A&A

R2 v1 2026-07-01T05:53:43.133Z