Recurrent eruptions from the emergence of a toroidal flux tube

Fuente: arXiv
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Main Authors: Zhuleku, J., Archontis, V., Moraitis, K.
Format: Preprint
Published: 2025
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author Zhuleku, J.
Archontis, V.
Moraitis, K.
author_facet Zhuleku, J.
Archontis, V.
Moraitis, K.
contents Solar eruptive behavior is often modeled with magnetohydrodynamic simulations of magnetic flux emergence. The usual geometry considered is that of a horizontal cylindrical magnetic flux tube. An alternative is the toroidal tube geometry which has some advantages over the cylindrical one, namely, that the emerging bipolar pair of sunspots do not drift apart indefinitely. In addition to the toroidal tube, we include an oblique, ambient field in the simulation, which leads to the production of increased activity from the interaction of ambient and emerging fields. Letting the simulation run for a long time reveals that six eruptive jets take place after an initial reconnection jet. In an attempt to better understand the eruptive activity we examine the evolution of free energy and relative helicity of the coronal volume, as well as, the magnetic tension forces acting on the magnetic system. We find that all quantities decrease in magnitude during the eruptive jets and rebuild afterwards. This recurrent activity continues even after flux emergence ceases and stops once the examined quantities saturate to nearly constant values.
format Preprint
id arxiv_https___arxiv_org_abs_2505_10436
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Recurrent eruptions from the emergence of a toroidal flux tube
Zhuleku, J.
Archontis, V.
Moraitis, K.
Solar and Stellar Astrophysics
Solar eruptive behavior is often modeled with magnetohydrodynamic simulations of magnetic flux emergence. The usual geometry considered is that of a horizontal cylindrical magnetic flux tube. An alternative is the toroidal tube geometry which has some advantages over the cylindrical one, namely, that the emerging bipolar pair of sunspots do not drift apart indefinitely. In addition to the toroidal tube, we include an oblique, ambient field in the simulation, which leads to the production of increased activity from the interaction of ambient and emerging fields. Letting the simulation run for a long time reveals that six eruptive jets take place after an initial reconnection jet. In an attempt to better understand the eruptive activity we examine the evolution of free energy and relative helicity of the coronal volume, as well as, the magnetic tension forces acting on the magnetic system. We find that all quantities decrease in magnitude during the eruptive jets and rebuild afterwards. This recurrent activity continues even after flux emergence ceases and stops once the examined quantities saturate to nearly constant values.
title Recurrent eruptions from the emergence of a toroidal flux tube
topic Solar and Stellar Astrophysics
url https://arxiv.org/abs/2505.10436