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Autori principali: Monga, Aabha, Inoue, Satoshi, Lee, Jeongwoo, Wang, Haimin, Hansteen, Viggo
Natura: Preprint
Pubblicazione: 2025
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Accesso online:https://arxiv.org/abs/2512.02295
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author Monga, Aabha
Inoue, Satoshi
Lee, Jeongwoo
Wang, Haimin
Hansteen, Viggo
author_facet Monga, Aabha
Inoue, Satoshi
Lee, Jeongwoo
Wang, Haimin
Hansteen, Viggo
contents Active region recurrent jets are manifestations of episodic magnetic energy release processes driven by complex interactions in the lower solar atmosphere. While magnetic flux emergence and cancellation are widely recognized as key contributors to jet formation, the mechanisms behind repeated magnetic reconnection remain poorly understood. In this letter, we report a sequence of nine recurrent jets originating from active region AR 12715 during its decay phase, where the jet activity was associated with a complex distribution of fragmented magnetic flux. Non-linear force-free field (NLFFF) extrapolations reveal the presence of low-lying, current-carrying loops beneath overarching open magnetic fields near the jet footpoints. These magnetic structures were perturbed by (i) emerging flux elements and (ii) interactions between oppositely polarized moving magnetic features (MMFs). To interpret these observations, we compare them with 3D radiative MHD simulation from the Bifrost model, which reproduce jet formation driven by interacting bipolar MMFs, leading to subsequent flux cancellation in the photosphere. Our results emphasize the critical role of MMF-driven flux interactions in initiating and sustaining recurrent jet activity in active regions.
format Preprint
id arxiv_https___arxiv_org_abs_2512_02295
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Driving mechanisms of solar active region geysers: The role of interacting magnetic flux
Monga, Aabha
Inoue, Satoshi
Lee, Jeongwoo
Wang, Haimin
Hansteen, Viggo
Solar and Stellar Astrophysics
Active region recurrent jets are manifestations of episodic magnetic energy release processes driven by complex interactions in the lower solar atmosphere. While magnetic flux emergence and cancellation are widely recognized as key contributors to jet formation, the mechanisms behind repeated magnetic reconnection remain poorly understood. In this letter, we report a sequence of nine recurrent jets originating from active region AR 12715 during its decay phase, where the jet activity was associated with a complex distribution of fragmented magnetic flux. Non-linear force-free field (NLFFF) extrapolations reveal the presence of low-lying, current-carrying loops beneath overarching open magnetic fields near the jet footpoints. These magnetic structures were perturbed by (i) emerging flux elements and (ii) interactions between oppositely polarized moving magnetic features (MMFs). To interpret these observations, we compare them with 3D radiative MHD simulation from the Bifrost model, which reproduce jet formation driven by interacting bipolar MMFs, leading to subsequent flux cancellation in the photosphere. Our results emphasize the critical role of MMF-driven flux interactions in initiating and sustaining recurrent jet activity in active regions.
title Driving mechanisms of solar active region geysers: The role of interacting magnetic flux
topic Solar and Stellar Astrophysics
url https://arxiv.org/abs/2512.02295